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1.
Sci Rep ; 8(1): 14445, 2018 09 27.
Article in English | MEDLINE | ID: mdl-30262852

ABSTRACT

High risk neuroblastoma (HRNB) accounts for 15% of all pediatric cancer deaths. Despite aggressive therapy approximately half of patients will relapse, typically with only transient responses to second-line therapy. This study evaluated the ornithine decarboxylase inhibitor difluoromethylornithine (DFMO) as maintenance therapy to prevent relapse following completion of standard therapy (Stratum 1) or after salvage therapy for relapsed/refractory disease (Stratum 2). This Phase II single agent, single arm multicenter study enrolled from June 2012 to February 2016. Subjects received 2 years of oral DFMO (750 ± 250 mg/m2 twice daily). Event free survival (EFS) and overall survival (OS) were determined on an intention-to-treat (ITT) basis. 101 subjects enrolled on Stratum 1 and 100 were eligible for ITT analysis; two-year EFS was 84% (±4%) and OS 97% (±2%). 39 subjects enrolled on Stratum 2, with a two-year EFS of 54% (±8%) and OS 84% (±6%). DFMO was well tolerated. The median survival time is not yet defined for either stratum. DFMO maintenance therapy for HRNB in remission is safe and associated with high EFS and OS. Targeting ODC represents a novel therapeutic mechanism that may provide a new strategy for preventing relapse in children with HRNB.


Subject(s)
Eflornithine/administration & dosage , Maintenance Chemotherapy , Neuroblastoma/drug therapy , Neuroblastoma/mortality , Child, Preschool , Disease-Free Survival , Eflornithine/adverse effects , Female , Humans , Male , Survival Rate
2.
J Autoimmun ; 82: 47-61, 2017 Aug.
Article in English | MEDLINE | ID: mdl-28551033

ABSTRACT

T lymphocyte homeostatic proliferation, driven by the engagement of T cell antigen receptor with self-peptide/major histocompatibility complexes, and signaling through the common γ-chain-containing cytokine receptors, is critical for the maintenance of the T cell compartment and is regulated by the Fas death receptor (Fas, CD95). In the absence of Fas, Fas-deficient lymphoproliferation spontaneous mutation (lpr) mice accumulate homeostatically expanded T cells. The functional consequences of sequential rounds of homeostatic expansion are not well defined. We thus examined the gene expression profiles of murine wild-type and Fas-deficient lpr CD8+ T cell subsets that have undergone different amounts of homeostatic proliferation as defined by their level of CD44 expression, and the CD4-CD8-TCRαß+ T cell subset that results from extensive homeostatic expansion of CD8+ T cells. Our studies show that recurrent T cell homeostatic proliferation results in global gene expression changes, including the progressive upregulation of both cytolytic proteins such as Fas-Ligand and granzyme B as well as inhibitory proteins such as programmed cell death protein 1 (PD-1) and lymphocyte activating 3 (Lag3). These findings provide an explanation for how augmented T cell homeostatic expansion could lead to the frequently observed clinical paradox of simultaneous autoinflammatory and immunodeficiency syndromes and provide further insight into the regulatory programs that control chronically stimulated T cells.


Subject(s)
Inflammation/genetics , Inflammation/immunology , Lymphocyte Activation/genetics , Lymphocyte Activation/immunology , T-Lymphocyte Subsets/immunology , T-Lymphocyte Subsets/metabolism , Animals , Biomarkers , Cell Proliferation , Cell Survival/genetics , Computational Biology/methods , Cytotoxicity, Immunologic , Disease Models, Animal , Female , Gene Expression Profiling , Homeostasis , Immunomodulation , Inflammation/metabolism , Mice , Mice, Transgenic , Programmed Cell Death 1 Receptor/metabolism , Receptors, Antigen, T-Cell/metabolism , Transcriptome
3.
DNA Repair (Amst) ; 53: 43-51, 2017 05.
Article in English | MEDLINE | ID: mdl-28292631

ABSTRACT

The base excision repair DNA glycosylases, EcoNth and hNTHL1, are homologous, with reported overlapping yet different substrate specificities. The catalytic amino acid residues are known and are identical between the two enzymes although the exact structures of the substrate binding pockets remain to be determined. We sought to explore the sequence basis of substrate differences using a phylogeny-based design of site-directed mutations. Mutations were made for each enzyme in the vicinity of the active site and we examined these variants for glycosylase and lyase activity. Single turnover kinetics were done on a subgroup of these, comparing activity on two lesions, 5,6-dihydrouracil and 5,6-dihydrothymine, with different opposite bases. We report that wild type hNTHL1 and EcoNth are remarkably alike with respect to the specificity of the glycosylase reaction, and although hNTHL1 is a much slower enzyme than EcoNth, the tighter binding of hNTHL1 compensates, resulting in similar kcat/Kd values for both enzymes with each of the substrates tested. For the hNTHL1 variant Gln287Ala, the specificity for substrates positioned opposite G is lost, but not that of substrates positioned opposite A, suggesting a discrimination role for this residue. The EcoNth Thr121 residue influences enzyme binding to DNA, as binding is significantly reduced with the Thr121Ala variant. Finally, we present evidence that hNTHL1 Asp144, unlike the analogous EcoNth residue Asp44, may be involved in resolving the glycosylase transition state.


Subject(s)
Catalytic Domain , DNA Damage , Deoxyribonuclease (Pyrimidine Dimer)/metabolism , Escherichia coli Proteins/metabolism , Mutation , Amino Acid Sequence , DNA/metabolism , Deoxyribonuclease (Pyrimidine Dimer)/genetics , Escherichia coli/enzymology , Escherichia coli Proteins/genetics , Humans , Kinetics , Substrate Specificity
4.
DNA Repair (Amst) ; 42: 44-55, 2016 06.
Article in English | MEDLINE | ID: mdl-27153211

ABSTRACT

In human cells, error-free repair of DNA double-strand breaks requires the DNA pairing and strand exchange activities of RAD51 recombinase. Activation of RAD51 recombination activities requires the assembly of RAD51 presynaptic filaments on the single-stranded DNA that forms at resected DSB ends. Mutations in proteins that control presynaptic filament assembly, such as BRCA2, and in RAD51 itself, are associated with human breast cancer. Here we describe the properties of two mutations in RAD51 protein that derive from human lung and kidney tumors, respectively. Sequence variants Q268P and Q272L both map to the DNA binding loop 2 (L2) region of RAD51, a motif that is involved in DNA binding and in the allosteric activation of ATP hydrolysis and DNA strand exchange activities. Both mutations alter the thermal stability, DNA binding, and ATPase properties of RAD51, however both variants retain intrinsic DNA strand exchange activity towards oligonucleotide substrates under optimized conditions. In contrast, both Q268P and Q272L variants exhibit drastically reduced DNA strand exchange activity in reaction mixtures containing long homologous ssDNA and dsDNA substrates and human RPA protein. Mixtures of wild-type and variant proteins also exhibit reduced DNA strand exchange activity, suggesting that heterozygous mutations could negatively affect DNA recombination and repair processes in vivo. Together, the findings of this study suggest that hypomorphic missense mutations in RAD51 protein could be drivers of genomic instability in cancer cells, and thereby contribute to the etiology of metastatic disease.


Subject(s)
DNA/genetics , Kidney Neoplasms/genetics , Kidney Neoplasms/metabolism , Lung Neoplasms/genetics , Lung Neoplasms/metabolism , Mutation, Missense , Rad51 Recombinase/genetics , DNA/metabolism , Female , Humans , Middle Aged , Models, Molecular , Protein Conformation , Protein Stability , Rad51 Recombinase/chemistry , Rad51 Recombinase/metabolism , Temperature
5.
PLoS One ; 10(5): e0127246, 2015.
Article in English | MEDLINE | ID: mdl-26018967

ABSTRACT

BACKGROUND: Neuroblastoma (NB) is the most common cancer in infancy and most frequent cause of death from extracranial solid tumors in children. Ornithine decarboxylase (ODC) expression is an independent indicator of poor prognosis in NB patients. This study investigated safety, response, pharmacokinetics, genetic and metabolic factors associated with ODC in a clinical trial of the ODC inhibitor difluoromethylornithine (DFMO) ± etoposide for patients with relapsed or refractory NB. METHODS AND FINDINGS: Twenty-one patients participated in a phase I study of daily oral DFMO alone for three weeks, followed by additional three-week cycles of DFMO plus daily oral etoposide. No dose limiting toxicities (DLTs) were identified in patients taking doses of DFMO between 500-1500 mg/m2 orally twice a day. DFMO pharmacokinetics, single nucleotide polymorphisms (SNPs) in the ODC gene and urinary levels of substrates for the tissue polyamine exporter were measured. Urinary polyamine levels varied among patients at baseline. Patients with the minor T-allele at rs2302616 of the ODC gene had higher baseline levels (p=0.02) of, and larger decreases in, total urinary polyamines during the first cycle of DFMO therapy (p=0.003) and had median progression free survival (PFS) that was over three times longer, compared to patients with the major G allele at this locus although this last result was not statistically significant (p=0.07). Six of 18 evaluable patients were progression free during the trial period with three patients continuing progression free at 663, 1559 and 1573 days after initiating treatment. Median progression-free survival was less among patients having increased urinary polyamines, especially diacetylspermine, although this result was not statistically significant (p=0.056). CONCLUSIONS: DFMO doses of 500-1500 mg/m2/day are safe and well tolerated in children with relapsed NB. Children with the minor T allele at rs2302616 of the ODC gene with relapsed or refractory NB had higher levels of urinary polyamine markers and responded better to therapy containing DFMO, compared to those with the major G allele at this locus. These findings suggest that this patient subset may display dependence on polyamines and be uniquely susceptible to therapies targeting this pathway. TRIAL REGISTRATION: Clinicaltrials.gov NCT#01059071.


Subject(s)
Eflornithine/pharmacology , Neuroblastoma/drug therapy , Ornithine Decarboxylase Inhibitors/pharmacology , Phenotype , Polyamines/metabolism , Adolescent , Child , Child, Preschool , Eflornithine/adverse effects , Eflornithine/pharmacokinetics , Eflornithine/therapeutic use , Etoposide/adverse effects , Etoposide/pharmacology , Etoposide/therapeutic use , Female , Humans , Infant , Male , Neuroblastoma/enzymology , Neuroblastoma/genetics , Neuroblastoma/urine , Ornithine Decarboxylase/metabolism , Ornithine Decarboxylase Inhibitors/adverse effects , Ornithine Decarboxylase Inhibitors/pharmacokinetics , Ornithine Decarboxylase Inhibitors/therapeutic use , Polyamines/urine , Recurrence , Safety , Treatment Outcome
6.
Cancer Med ; 4(6): 871-86, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25720842

ABSTRACT

The primary objective of the study was to evaluate the feasibility and safety of a process which would utilize genome-wide expression data from tumor biopsies to support individualized treatment decisions. Current treatment options for recurrent neuroblastoma are limited and ineffective, with a survival rate of <10%. Molecular profiling may provide data which will enable the practitioner to select the most appropriate therapeutic option for individual patients, thus improving outcomes. Sixteen patients with neuroblastoma were enrolled of which fourteen were eligible for this study. Feasibility was defined as completion of tumor biopsy, pathological evaluation, RNA quality control, gene expression profiling, bioinformatics analysis, generation of a drug prediction report, molecular tumor board yielding a treatment plan, independent medical monitor review, and treatment initiation within a 21 day period. All eligible biopsies passed histopathology and RNA quality control. Expression profiling by microarray and RNA sequencing were mutually validated. The average time from biopsy to report generation was 5.9 days and from biopsy to initiation of treatment was 12.4 days. No serious adverse events were observed and all adverse events were expected. Clinical benefit was seen in 64% of patients as stabilization of disease for at least one cycle of therapy or partial response. The overall response rate was 7% and the progression free survival was 59 days. This study demonstrates the feasibility and safety of performing real-time genomic profiling to guide treatment decision making for pediatric neuroblastoma patients.


Subject(s)
Molecular Targeted Therapy/methods , Neoplasm Recurrence, Local/therapy , Neuroblastoma/therapy , Adolescent , Antineoplastic Agents/therapeutic use , Child , Child, Preschool , Chronic Disease , Feasibility Studies , Female , Gene Expression Profiling/methods , Genome-Wide Association Study/methods , Humans , Male , Molecular Targeted Therapy/adverse effects , Patient Safety , Prospective Studies , RNA, Neoplasm/genetics , Sequence Analysis, RNA/methods , Time-to-Treatment , Treatment Outcome , Young Adult
7.
Oncotarget ; 6(1): 196-206, 2015 Jan 01.
Article in English | MEDLINE | ID: mdl-25415050

ABSTRACT

LIN28 has emerged as an oncogenic driver in a number of cancers, including neuroblastoma (NB). Overexpression of LIN28 correlates with poor outcome in NB, therefore drugs that impact the LIN28/Let-7 pathway could be beneficial in treating NB patients. The LIN28/Let-7 pathway affects many cellular processes including the regulation of cancer stem cells and glycolytic metabolism. Polyamines, regulated by ornithine decarboxylase (ODC) modulate eIF-5A which is a direct regulator of the LIN28/Let-7 axis. We propose that therapy inhibiting ODC will restore balance to the LIN28/Let-7 axis, suppress glycolytic metabolism, and decrease MYCN protein expression in NB. Difluoromethylornithine (DFMO) is an inhibitor of ODC in clinical trials for children with NB. In vitro experiments using NB cell lines, BE(2)-C, SMS-KCNR, and CHLA90 show that DFMO treatment reduced LIN28B and MYCN protein levels and increased Let-7 miRNA and decreased neurosphere formation. Glycolytic metabolic activity decreased with DFMO treatment in vivo. Additionally, sensitivity to DFMO treatment correlated with LIN28B overexpression (BE(2)-C>SMS-KCNR>CHLA90). This is the first study to demonstrate that DFMO treatment restores balance to the LIN28/Let-7 axis and inhibits glycolytic metabolism and neurosphere formation in NB and that PET scans may be a meaningful imaging tool to evaluate the therapeutic effects of DFMO treatment.


Subject(s)
Brain Neoplasms/genetics , MicroRNAs/genetics , Neuroblastoma/genetics , Ornithine Decarboxylase Inhibitors/chemistry , Ornithine Decarboxylase/chemistry , RNA-Binding Proteins/genetics , Adenosine Triphosphate/chemistry , Animals , Antineoplastic Agents/chemistry , Brain Neoplasms/metabolism , Cell Line, Tumor , Disease Progression , Dose-Response Relationship, Drug , Eflornithine/chemistry , Female , Gene Expression Regulation, Neoplastic , Glycolysis , Humans , Mice , Mice, Nude , MicroRNAs/metabolism , Neuroblastoma/metabolism , Oligonucleotide Array Sequence Analysis , Polyamines/chemistry , Positron-Emission Tomography , RNA-Binding Proteins/metabolism
8.
PLoS Genet ; 9(8): e1003660, 2013.
Article in English | MEDLINE | ID: mdl-23950727

ABSTRACT

The Gram-positive, spore-forming pathogen Clostridium difficile is the leading definable cause of healthcare-associated diarrhea worldwide. C. difficile infections are difficult to treat because of their frequent recurrence, which can cause life-threatening complications such as pseudomembranous colitis. The spores of C. difficile are responsible for these high rates of recurrence, since they are the major transmissive form of the organism and resistant to antibiotics and many disinfectants. Despite the importance of spores to the pathogenesis of C. difficile, little is known about their composition or formation. Based on studies in Bacillus subtilis and other Clostridium spp., the sigma factors σ(F), σ(E), σ(G), and σ(K) are predicted to control the transcription of genes required for sporulation, although their specific functions vary depending on the organism. In order to determine the roles of σ(F), σ(E), σ(G), and σ(K) in regulating C. difficile sporulation, we generated loss-of-function mutations in genes encoding these sporulation sigma factors and performed RNA-Sequencing to identify specific sigma factor-dependent genes. This analysis identified 224 genes whose expression was collectively activated by sporulation sigma factors: 183 were σ(F)-dependent, 169 were σ(E)-dependent, 34 were σ(G)-dependent, and 31 were σ(K)-dependent. In contrast with B. subtilis, C. difficile σ(E) was dispensable for σ(G) activation, σ(G) was dispensable for σ(K) activation, and σ(F) was required for post-translationally activating σ(G). Collectively, these results provide the first genome-wide transcriptional analysis of genes induced by specific sporulation sigma factors in the Clostridia and highlight that diverse mechanisms regulate sporulation sigma factor activity in the Firmicutes.


Subject(s)
Clostridioides difficile/genetics , Diarrhea/microbiology , Sigma Factor/genetics , Spores, Bacterial/genetics , Bacillus subtilis/genetics , Bacillus subtilis/growth & development , Clostridioides difficile/growth & development , Diarrhea/genetics , Gene Expression Regulation, Bacterial , Genome, Bacterial , Humans , Mutation , Sequence Analysis, RNA , Sigma Factor/isolation & purification , Sigma Factor/metabolism , Spores, Bacterial/growth & development , Transcription, Genetic
9.
PLoS One ; 8(7): e62743, 2013.
Article in English | MEDLINE | ID: mdl-23894272

ABSTRACT

Histamine H(3) receptor (Hrh3/H(3)R) is primarily expressed by neurons in the central nervous system (CNS) where it functions as a presynaptic inhibitory autoreceptor and heteroreceptor. Previously, we identified an H(3)R-mediated central component in susceptibility to experimental allergic encephalomyelitis (EAE), the principal autoimmune model of multiple sclerosis (MS), related to neurogenic control of blood brain barrier permeability and peripheral T cell effector responses. Furthermore, we identified Hrh3 as a positional candidate for the EAE susceptibility locus Eae8. Here, we characterize Hrh3 polymorphisms between EAE-susceptible and resistant SJL and B10.S mice, respectively, and show that Hrh3 isoform expression in the CNS is differentially regulated by acute peripheral inflammatory stimuli in an allele-specific fashion. Next, we show that Hrh3 is not expressed in any subpopulations of the immune compartment, and that secondary lymphoid tissue is anatomically poised to be regulated by central H(3)R signaling. Accordingly, using transcriptome analysis, we show that, inflammatory stimuli elicit unique transcriptional profiles in the lymph nodes of H(3)RKO mice compared to WT mice, which is indicative of negative regulation of peripheral immune responses by central H(3)R signaling. These results further support a functional link between the neurogenic control of T cell responses and susceptibility to CNS autoimmune disease coincident with acute and/or chronic peripheral inflammation. Pharmacological targeting of H(3)R may therefore be useful in preventing the development and formation of new lesions in MS, thereby limiting disease progression.


Subject(s)
Central Nervous System/pathology , Encephalomyelitis, Autoimmune, Experimental/genetics , Encephalomyelitis, Autoimmune, Experimental/immunology , Genetic Predisposition to Disease/genetics , Receptors, Histamine H3/genetics , Signal Transduction/genetics , Signal Transduction/immunology , Amino Acid Sequence , Animals , Central Nervous System/immunology , Central Nervous System/metabolism , Encephalomyelitis, Autoimmune, Experimental/pathology , Female , Gene Expression Regulation , Hematopoiesis/genetics , Hematopoiesis/immunology , Humans , Inflammation/genetics , Inflammation/immunology , Inflammation/pathology , Intracellular Space/metabolism , Lymph Nodes/immunology , Male , Mice , Molecular Sequence Data , Polymorphism, Single Nucleotide , Protein Isoforms/chemistry , Protein Isoforms/genetics , Protein Structure, Tertiary , Receptors, Histamine H3/chemistry
10.
BMC Genomics ; 14: 296, 2013 May 02.
Article in English | MEDLINE | ID: mdl-23638659

ABSTRACT

BACKGROUND: The lactating mammary gland responds to changes in milking frequency by modulating milk production. This response is locally regulated and, in dairy cows, the udder is particularly sensitive during early lactation. Relative to cows milked twice-daily throughout lactation, those milked four-times-daily for just the first 3 weeks of lactation produce more milk throughout that lactation. We hypothesized that the milk yield response would be associated with increased mammary cell turnover and changes in gene expression during frequent milking and persisting thereafter. Cows were assigned to unilateral frequent milking (UFM; left udder halves milked twice-daily; right udder halves milked four-times daily) on days 1 to 21 of lactation, followed by twice-daily milking for the remainder of lactation. Relative to udder halves milked twice-daily, those milked four-times produced more milk during UFM; the difference in milk yield declined acutely upon cessation of UFM after day 21, but remained significantly elevated thereafter. We obtained mammary biopsies from both udder halves on days 21, 23, and 40 of lactation. RESULTS: Mammary cell proliferation and apoptosis were not affected by milking frequency. We identified 75 genes that were differentially expressed between paired udder halves on day 21 but exhibited a reversal of differential expression on day 23. Among those genes, we identified four clusters characterized by similar temporal patterns of differential expression. Two clusters (11 genes) were positively correlated with changes in milk yield and were differentially expressed on day 21 of lactation only, indicating involvement in the initial milk yield response. Two other clusters (64 genes) were negatively correlated with changes in milk yield. Twenty-nine of the 75 genes were also differentially expressed on day 40 of lactation. CONCLUSIONS: Changes in milking frequency during early lactation did not alter mammary cell population dynamics, but were associated with coordinated changes in mammary expression of at least 75 genes. Twenty-nine of those genes were differentially expressed 19 days after cessation of treatment, implicating them in the persistent milk yield response. We conclude that we have identified a novel transcriptional signature that may mediate the adaptive response to changes in milking frequency.


Subject(s)
Apoptosis , Cell Proliferation , Gene Expression , Lactation/genetics , Mammary Glands, Animal/physiology , Animals , Cattle , Cluster Analysis , Female , Lactation/physiology , Mammary Glands, Animal/cytology , Milk , Oligonucleotide Array Sequence Analysis , Time Factors , Transcriptome
11.
J Cancer Ther Res ; 2: 21, 2013 Dec 28.
Article in English | MEDLINE | ID: mdl-25520806

ABSTRACT

In this study, we investigated the cytotoxic effects of a broad-spectrum histone deacetylase (HDAC) inhibitor, PCI-24781, alone and in combination with the proteasome inhibitor bortezomib in neuroblastoma cell lines. The combination was shown to induce synergistic cytotoxity involving the formation of reactive oxygen species. The cleavage of caspase-3 and PARP, as determined by western blotting, indicated that cell death was primarily due to apoptosis. Xenograft mouse models indicated increased survival among animals treated with this combination. The Notch signaling pathway and MYCN gene expression were quantified by reverse transcription-polymerase chain reaction (PCR) in cells treated with PCI-24781 and bortezomib, alone and in combination. Notch pathway expression increased in response to an HDAC inhibitor. NFKB1 and MYCN were both significantly down regulated. Our results suggest that PCI-24781 and bortezomib are synergistic in neuroblastoma cell lines and may be a new therapeutic strategy for this disease.

12.
PLoS Genet ; 8(12): e1003140, 2012.
Article in English | MEDLINE | ID: mdl-23300462

ABSTRACT

Experimental autoimmune orchitis (EAO), the principal model of non-infectious testicular inflammatory disease, can be induced in susceptible mouse strains by immunization with autologous testicular homogenate and appropriate adjuvants. As previously established, the genome of DBA/2J mice encodes genes that are capable of conferring dominant resistance to EAO, while the genome of BALB/cByJ mice does not and they are therefore susceptible to EAO. In a genome scan, we previously identified Orch3 as the major quantitative trait locus controlling dominant resistance to EAO and mapped it to chromosome 11. Here, by utilizing a forward genetic approach, we identified kinesin family member 1C (Kif1c) as a positional candidate for Orch3 and, using a transgenic approach, demonstrated that Kif1c is Orch3. Mechanistically, we showed that the resistant Kif1c(D2) allele leads to a reduced antigen-specific T cell proliferative response as a consequence of decreased MHC class II expression by antigen presenting cells, and that the L(578) → P(578) and S(1027) → P(1027) polymorphisms distinguishing the BALB/cByJ and DBA/2J alleles, respectively, can play a role in transcriptional regulation. These findings may provide mechanistic insight into how polymorphism in other kinesins such as KIF21B and KIF5A influence susceptibility and resistance to human autoimmune diseases.


Subject(s)
Disease Resistance/genetics , Genes, Dominant , Kinesins/genetics , Orchitis , Alleles , Animals , Autoimmune Diseases/genetics , Autoimmune Diseases/immunology , Gene Expression , Genes, MHC Class II , Genetic Predisposition to Disease , Humans , Male , Mice , Mice, Inbred BALB C , Mice, Inbred DBA , Orchitis/genetics , Orchitis/immunology , Quantitative Trait Loci/genetics , Testis/immunology
13.
Physiol Genomics ; 44(1): 76-88, 2012 Jan 18.
Article in English | MEDLINE | ID: mdl-22085904

ABSTRACT

A full-term pregnancy early in life reduces lifetime risk of developing breast cancer, and the effect can be mimicked in rodents by full-term pregnancy or short-term treatment with exogenous estrogen and progesterone. To gain insight into the protective mechanism, 15 3-mo-old postpubertal virgin Lewis rats were randomly assigned to three groups: control (C), pregnancy (P), or hormone (H). The P group animals underwent a full-term pregnancy, and H group animals were implanted subcutaneously with silastic capsules filled with ethynyl estradiol and megesterol acetate for 21 days. C and P animals were implanted with sham capsules. On day 21 capsules were removed, which was followed by a 49-day involution period, euthanasia, and mammary tissue collection. Global gene expression was measured using Rat Genome 230.2 Arrays. Histological analysis revealed that P and H treatments induced sustained morphological changes in the mammary gland with significantly increased percentages of mammary parenchyma and stromal tissues and higher ratio of stroma to parenchyma. Transcriptome analysis showed that P and H treatments induced sustained global changes in gene expression in the mammary gland. Analysis of commonly up- and downregulated genes in P and H relative to C treatment showed increased expression of three matrix metallopeptidases (Mmp3, 8, and 12), more differentiated mammary phenotype, enhanced innate and adaptive immunity, and reduced cell proliferation and angiogenic signatures. The sustained morphological and global gene expression changes in mammary tissue after pregnancy and hormone treatment may function together to provide the protective effect against breast cancer.


Subject(s)
Breast Neoplasms/prevention & control , Carcinoma/prevention & control , Mammary Glands, Animal/anatomy & histology , Mammary Glands, Animal/metabolism , Pregnancy/physiology , Animals , Breast Neoplasms/etiology , Breast Neoplasms/genetics , Breast Neoplasms/metabolism , Carcinoma/etiology , Carcinoma/genetics , Carcinoma/metabolism , Cell Transformation, Neoplastic/genetics , Cell Transformation, Neoplastic/metabolism , Cell Transformation, Neoplastic/pathology , Disease Resistance/genetics , Female , Gene Expression Profiling , Gene Expression Regulation/physiology , Humans , Microarray Analysis , Pregnancy/genetics , Pregnancy/metabolism , Rats , Rats, Inbred Lew , Risk Factors
14.
PLoS One ; 6(10): e25246, 2011.
Article in English | MEDLINE | ID: mdl-21998646

ABSTRACT

Protein evolution includes the birth and death of structural motifs. For example, a zinc finger or a salt bridge may be present in some, but not all, members of a protein family. We propose that such transitions are manifest in sequence phylogenies as concerted shifts in substitution rates of amino acids that are neighbors in a representative structure. First, we identified rate shifts in a quartet from the Fpg/Nei family of base excision repair enzymes using a method developed by Xun Gu and coworkers. We found the shifts to be spatially correlated, more precisely, associated with a flexible loop involved in bacterial Fpg substrate specificity. Consistent with our result, sequences and structures provide convincing evidence that this loop plays a very different role in other family members. Second, then, we developed a method for identifying latent protein structural characters (LSC) given a set of homologous sequences based on Gu's method and proximity in a high-resolution structure. Third, we identified LSC and assigned states of LSC to clades within the Fpg/Nei family of base excision repair enzymes. We describe seven LSC; an accompanying Proteopedia page (http://proteopedia.org/wiki/index.php/Fpg_Nei_Protein_Family) describes these in greater detail and facilitates 3D viewing. The LSC we found provided a surprisingly complete picture of the interaction of the protein with the DNA capturing familiar examples, such as a Zn finger, as well as more subtle interactions. Their preponderance is consistent with an important role as phylogenetic characters. Phylogenetic inference based on LSC provided convincing evidence of independent losses of Zn fingers. Structural motifs may serve as important phylogenetic characters and modeling transitions involving structural motifs may provide a much deeper understanding of protein evolution.


Subject(s)
Amino Acid Substitution , Amino Acids , Computational Biology/methods , DNA Repair Enzymes/chemistry , DNA Repair Enzymes/genetics , DNA/metabolism , DNA Repair Enzymes/metabolism , DNA-Formamidopyrimidine Glycosylase/chemistry , DNA-Formamidopyrimidine Glycosylase/genetics , DNA-Formamidopyrimidine Glycosylase/metabolism , Deoxyribonuclease (Pyrimidine Dimer)/chemistry , Deoxyribonuclease (Pyrimidine Dimer)/genetics , Deoxyribonuclease (Pyrimidine Dimer)/metabolism , Enzyme Stability , Evolution, Molecular , Humans , Models, Molecular , Phylogeny , Sequence Homology, Amino Acid , Substrate Specificity , Zinc Fingers
15.
Hum Mutat ; 32(8): 900-11, 2011 Aug.
Article in English | MEDLINE | ID: mdl-21462282

ABSTRACT

Variants in the CDKN2A tumor suppressor are associated with Familial Melanoma (FM), although for many variants the linkage is weak. The effects of missense variants on protein function and pathogenicity are often unclear. Multiple methods (e.g., laboratory, computational, epidemiological) have been developed to analyze whether a missense variant is pathogenic or not. It is not yet clear how to integrate these data types into a strategy for variant classification. We studied 51 CDKN2A missense variants using a cell cycle arrest assay. There was a continuum of results ranging from full wild-type effect through partial activity to complete loss of arrest. A reproducible decrease of 30% of cell cycle arrest activity correlated with FM association. We analyzed missense CDKN2A germline variants using a Bayesian method to combine multiple data types and derive a probability of pathogenicity. When equal to or more than two data types could be evaluated with this method, 22 of 25 FM-associated variants and 8 of 15 variants of uncertain significance were classified as likely pathogenic with >95% probability. The other 10 variants were classified as uncertain (probability 5-95%). For most variants, there were insufficient data to draw a conclusion. The Bayesian model appears to be a sound method of classifying missense variants in cancer susceptibility genes.


Subject(s)
Cyclin-Dependent Kinase Inhibitor p16/genetics , Mutation/genetics , Polymorphism, Single Nucleotide/genetics , Biological Assay , Cell Cycle/genetics , Cell Line, Tumor , Computational Biology , Cyclin-Dependent Kinase Inhibitor p16/metabolism , Databases, Genetic , Genetic Predisposition to Disease/genetics , Humans , Melanoma/epidemiology , Melanoma/genetics , Melanoma/metabolism , Melanoma/pathology , Reference Values
16.
Proc Natl Acad Sci U S A ; 107(11): 4925-30, 2010 Mar 16.
Article in English | MEDLINE | ID: mdl-20185759

ABSTRACT

To protect cells from oxidative DNA damage and mutagenesis, organisms possess multiple glycosylases to recognize the damaged bases and to initiate the Base Excision Repair pathway. Three DNA glycosylases have been identified in mammals that are homologous to the Escherichia coli Fpg and Nei proteins, Neil1, Neil2, and Neil3. Neil1 and Neil2 in human and mouse have been well characterized while the properties of the Neil3 protein remain to be elucidated. In this study, we report the characterization of Mus musculus (house mouse) Neil3 (MmuNeil3) as an active DNA glycosylase both in vitro and in vivo. In duplex DNA, MmuNeil3 recognizes the oxidized purines, spiroiminodihydantoin (Sp), guanidinohydantoin (Gh), 2,6-diamino-4-hydroxy-5-formamidopyrimidine (FapyG) and 4,6-diamino- 5-formamidopyrimidine (FapyA), but not 8-oxo-7,8-dihydroguanine (8-oxoG). Interestingly, MmuNeil3 prefers lesions in single-stranded DNA and in bubble structures. In contrast to other members of the family that use the N-terminal proline as the nucleophile, MmuNeil3 forms a Schiff base intermediate via its N-terminal valine. We expressed the glycosylase domain of MmuNeil3 (MmuNeil3Delta324) in an Escherichia coli triple mutant lacking Fpg, Nei, and MutY glycosylase activities and showed that MmuNeil3 greatly reduced both the spontaneous mutation frequency and the level of FapyG in the DNA, suggesting that Neil3 plays a role in repairing FapyG in vivo.


Subject(s)
DNA Glycosylases/metabolism , Endodeoxyribonucleases/metabolism , Sequence Homology, Amino Acid , Amino Acid Sequence , Animals , DNA/metabolism , DNA Damage , DNA Glycosylases/chemistry , Endodeoxyribonucleases/chemistry , Escherichia coli/genetics , Gamma Rays , Guanidines/metabolism , Guanosine/analogs & derivatives , Guanosine/metabolism , Hydantoins/metabolism , Kinetics , Mice , Molecular Sequence Data , Mutation/genetics , Pyrimidines/metabolism , Schiff Bases/metabolism , Sequence Alignment , Spiro Compounds/metabolism , Substrate Specificity/radiation effects , Valine/metabolism
17.
J Toxicol Environ Health A ; 73(5): 423-36, 2010.
Article in English | MEDLINE | ID: mdl-20155583

ABSTRACT

Identifying and understanding the early molecular events that underscore mineral pathogenicity using in vitro screening tests is imperative, especially given the large number of synthetic and natural fibers and particles being introduced into the environment. The purpose of the work described here was to examine the ability of gene profiling (Affymetrix microarrays) to predict the pathogenicity of various materials in a human mesothelial cell line (LP9/TERT-1) exposed to equal surface area concentrations (15 x 10(6) or 75 x 10(6) microm(2)/cm(2)) of crocidolite asbestos, nonfibrous talc, fine titanium dioxide (TiO(2)), or glass beads for 8 or 24 h. Since crocidolite asbestos caused the greatest number of alterations in gene expression, multiplex analysis (Bio-Plex) of proteins released from LP9/TERT-1 cells exposed to crocidolite asbestos was also assessed to reveal if this approach might also be explored in future assays comparing various mineral types. To verify that LP9/TERT-1 cells were more sensitive than other cell types to asbestos, human ovarian epithelial cells (IOSE) were also utilized in microarray studies. Upon assessing changes in gene expression via microarrays, principal component analysis (PCA) of these data was used to identify patterns of differential gene expression. PCA of microarray data confirmed that LP9/TERT-1 cells were more responsive than IOSE cells to crocidolite asbestos or nonfibrous talc, and that crocidolite asbestos elicited greater responses in both cell types when compared to nonfibrous talc, TiO(2), or glass beads. Bio-Plex analysis demonstrated that asbestos caused an increase in interleukin-13 (IL-13), basic fibroblast growth factor (bFGF), granulocyte colony-stimulating factor (G-CSF), and vascular endothelial growth factor (VEGF). These responses were generally dose-dependent (bFGF and G-CSF only) and tumor necrosis factor (TNF)-alpha independent (except for G-CSF). Thus, microarray and Bio-Plex analyses are valuable in determining early molecular responses to fibers/particles and may directly contribute to understanding the etiology of diseases caused by them. The number and magnitude of changes in gene expression or "profiles" of secreted proteins may serve as valuable metrics for determining the potential pathogenicity of various mineral types. Hence, alterations in gene expression and cytokine/chemokine changes induced by crocidolite asbestos in LP9/TERT-1 cells may be indicative of its increased potential to cause mesothelioma in comparison to the other nonfibrous materials examined.


Subject(s)
Epithelium/drug effects , Gene Expression Profiling/methods , Particulate Matter/toxicity , Toxicity Tests/methods , Asbestos, Crocidolite/toxicity , Cell Line , Epithelium/metabolism , Fibroblast Growth Factor 2/genetics , Fibroblast Growth Factor 2/metabolism , Gene Expression/drug effects , Granulocyte Colony-Stimulating Factor/genetics , Granulocyte Colony-Stimulating Factor/metabolism , Humans , Interleukin-13/genetics , Interleukin-13/metabolism , Proteomics , Talc/toxicity , Telomerase/genetics , Titanium/toxicity , Tumor Necrosis Factor-alpha/genetics , Tumor Necrosis Factor-alpha/metabolism , Vascular Endothelial Growth Factor A/genetics , Vascular Endothelial Growth Factor A/metabolism
18.
DNA Repair (Amst) ; 9(2): 177-90, 2010 Feb 04.
Article in English | MEDLINE | ID: mdl-20031487

ABSTRACT

The DNA glycosylases that remove oxidized DNA bases fall into two general families: the Fpg/Nei family and the Nth superfamily. Based on protein sequence alignments, we identified four putative Fpg/Nei family members, as well as a putative Nth protein in Mycobacterium tuberculosis H37Rv. All four Fpg/Nei proteins were successfully overexpressed using a bicistronic vector created in our laboratory. The MtuNth protein was also overexpressed in soluble form. The substrate specificities of the purified enzymes were characterized in vitro with oligodeoxynucleotide substrates containing single lesions. Some were further characterized by gas chromatography/mass spectrometry (GC/MS) analysis of products released from gamma-irradiated DNA. MtuFpg1 has substrate specificity similar to that of EcoFpg. Both EcoFpg and MtuFpg1 are more efficient at removing spiroiminodihydantoin (Sp) than 7,8-dihydro-8-oxoguanine (8-oxoG). However, MtuFpg1 shows a substantially increased opposite base discrimination compared to EcoFpg. MtuFpg2 contains only the C-terminal domain of an Fpg protein and has no detectable DNA binding activity or DNA glycosylase/lyase activity and thus appears to be a pseudogene. MtuNei1 recognizes oxidized pyrimidines on both double-stranded and single-stranded DNA and exhibits uracil DNA glycosylase activity. MtuNth recognizes a variety of oxidized bases, including urea, 5,6-dihydrouracil (DHU), 5-hydroxyuracil (5-OHU), 5-hydroxycytosine (5-OHC) and methylhydantoin (MeHyd). Both MtuNei1 and MtuNth excise thymine glycol (Tg); however, MtuNei1 strongly prefers the (5R) isomers, whereas MtuNth recognizes only the (5S) isomers. MtuNei2 did not demonstrate activity in vitro as a recombinant protein, but like MtuNei1 when expressed in Escherichia coli, it decreased the spontaneous mutation frequency of both the fpg mutY nei triple and nei nth double mutants, suggesting that MtuNei2 is functionally active in vivo recognizing both guanine and cytosine oxidation products. The kinetic parameters of the MtuFpg1, MtuNei1 and MtuNth proteins on selected substrates were also determined and compared to those of their E. coli homologs.


Subject(s)
Bacterial Proteins/metabolism , DNA Glycosylases/metabolism , Escherichia coli/enzymology , Mycobacterium tuberculosis/enzymology , DNA, Bacterial/metabolism , DNA, Single-Stranded/metabolism , Drug Resistance, Bacterial/drug effects , Escherichia coli/drug effects , Gas Chromatography-Mass Spectrometry , Kinetics , Mutation/genetics , Mycobacterium tuberculosis/drug effects , Oxidation-Reduction/drug effects , Pseudogenes/genetics , Purines/metabolism , Pyrimidines/metabolism , Rifampin/pharmacology , Stereoisomerism , Substrate Specificity/drug effects
19.
J Bacteriol ; 192(5): 1433-43, 2010 Mar.
Article in English | MEDLINE | ID: mdl-19915021

ABSTRACT

Streptococcus mutans is the primary causative agent of human dental caries, a ubiquitous infectious disease for which effective treatment strategies remain elusive. We investigated a 25-kDa SloR metalloregulatory protein in this oral pathogen, along with its target genes that contribute to cariogenesis. Previous studies have demonstrated manganese- and SloR-dependent repression of the sloABCR metal ion transport operon in S. mutans. In the present study, we demonstrate that S. mutans coordinates this repression with that of certain virulence attributes. Specifically, we noted virulence gene repression in a manganese-containing medium when SloR binds to promoter-proximal sequence palindromes on the S. mutans chromosome. We applied a genome-wide approach to elucidate the sequences to which SloR binds and to reveal additional "class I" genes that are subject to SloR- and manganese-dependent repression. These analyses identified 204 S. mutans genes that are preceded by one or more conserved palindromic SloR recognition elements (SREs). We cross-referenced these genes with those that we had identified previously as SloR and/or manganese modulated in microarray and real-time quantitative reverse transcription-PCR (qRT-PCR) experiments. From this analysis, we identified a number of S. mutans virulence genes that are subject to transcriptional upregulation by SloR and noted that such "class II"-type regulation is dependent on direct SloR binding to promoter-distal SREs. These observations are consistent with a bifunctional role for the SloR metalloregulator and implicate it as a target for the development of therapies aimed at alleviating S. mutans-induced caries formation.


Subject(s)
Gene Expression Regulation, Bacterial , Manganese/metabolism , Regulon , Repressor Proteins/physiology , Streptococcus mutans/physiology , Virulence Factors/biosynthesis , Binding Sites , Conserved Sequence , DNA, Bacterial/metabolism , Gene Expression Profiling , Humans , Inverted Repeat Sequences , Oligonucleotide Array Sequence Analysis , Promoter Regions, Genetic , Protein Binding , Repressor Proteins/genetics , Reverse Transcriptase Polymerase Chain Reaction , Streptococcus mutans/genetics
20.
DNA Repair (Amst) ; 8(5): 643-53, 2009 May 01.
Article in English | MEDLINE | ID: mdl-19217358

ABSTRACT

Formamidopyrimidine DNA glycosylase (Fpg) and endonuclease VIII (Nei) share an overall common three-dimensional structure and primary amino acid sequence in conserved structural motifs but have different substrate specificities, with bacterial Fpg proteins recognizing formamidopyrimidines, 8-oxoguanine (8-oxoG) and its oxidation products guanidinohydantoin (Gh), and spiroiminodihydantoin (Sp) and bacterial Nei proteins recognizing primarily damaged pyrimidines. In addition to bacteria, Fpg has also been found in plants, while Nei is sparsely distributed among the prokaryotes and eukaryotes. Phylogenetic analysis of Fpg and Nei DNA glycosylases demonstrated, with 95% bootstrap support, a clade containing exclusively sequences from plants and fungi. Members of this clade exhibit sequence features closer to bacterial Fpg proteins than to any protein designated as Nei based on biochemical studies. The Candida albicans (Cal) Fpg DNA glycosylase and a previously studied Arabidopsis thaliana (Ath) Fpg DNA glycosylase were expressed, purified and characterized. In oligodeoxynucleotides, the preferred glycosylase substrates for both enzymes were Gh and Sp, the oxidation products of 8-oxoG, with the best substrate being a site of base loss. GC/MS analysis of bases released from gamma-irradiated DNA show FapyAde and FapyGua to be excellent substrates as well. Studies carried out with oligodeoxynucleotide substrates demonstrate that both enzymes discriminated against A opposite the base lesion, characteristic of Fpg glycosylases. Single turnover kinetics with oligodeoxynucleotides showed that the plant and fungal glycosylases were most active on Gh and Sp, less active on oxidized pyrimidines and exhibited very little or no activity on 8-oxoG. Surprisingly, the activity of AthFpg1 on an AP site opposite a G was extremely robust with a k(obs) of over 2500min(-1).


Subject(s)
Arabidopsis Proteins/metabolism , Arabidopsis/enzymology , Candida albicans/enzymology , DNA Glycosylases/metabolism , DNA-Formamidopyrimidine Glycosylase/metabolism , Guanidines/metabolism , Guanine/analogs & derivatives , Guanosine/analogs & derivatives , Hydantoins/metabolism , Spiro Compounds/metabolism , Arabidopsis Proteins/genetics , Arabidopsis Proteins/isolation & purification , DNA Glycosylases/genetics , DNA Glycosylases/isolation & purification , DNA, Bacterial/genetics , DNA, Plant/genetics , DNA-Formamidopyrimidine Glycosylase/genetics , DNA-Formamidopyrimidine Glycosylase/isolation & purification , Deoxyribonuclease (Pyrimidine Dimer)/genetics , Deoxyribonuclease (Pyrimidine Dimer)/metabolism , Gamma Rays , Gas Chromatography-Mass Spectrometry , Guanine/metabolism , Guanosine/metabolism , Kinetics , Pyrimidines/chemistry
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