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1.
J Nutr Health Aging ; 22(1): 8-15, 2018.
Article in English | MEDLINE | ID: mdl-29300416

ABSTRACT

OBJECTIVES: Previous studies showed a U-shaped association between BMI and (physical) frailty. We studied the association between BMI and physical, cognitive, psychological, and social frailty. Furthermore, the overlap between and prevalence of these frailty domains was examined. DESIGN: Cross-sectional study. SETTING: The Doetinchem Cohort Study is a longitudinal population-based study starting in 1987-1991 examining men and women aged 20-59 with follow-up examinations every 5 yrs. PARTICIPANTS: For the current analyses, we used data from round 5 (2008-2012) with 4019 participants aged 41-81 yrs. MEASUREMENTS: Physical frailty was defined as having ≥ 2 of 4 frailty criteria from the Frailty Phenotype (unintentional weight loss, exhaustion, physical activity, handgrip strength). Cognitive frailty was defined as the < 10th percentile on global cognitive functioning (based on memory, speed, flexibility). Psychological frailty was defined as having 2 out of 2 criteria (depression, mental health). Social frailty was defined as having ≥ 2 of 3 criteria (loneliness, social support, social participation). BMI was divided into four classes. Analyses were adjusted for sex, age, level of education, and smoking. RESULTS: A U-shaped association was observed between BMI and physical frailty, a small linear association for BMI and cognitive frailty and no association between BMI and psychological and social frailty. The four frailty domains showed only a small proportion of overlap. The prevalence of physical, cognitive and social frailty increased with age, whereas psychological frailty did not. CONCLUSION: We confirm that not only underweight but also obesity is associated with physical frailty. Obesity also seems to be associated with cognitive frailty. Further, frailty prevention should focus on multiple domains and target individuals at a younger age (<65yrs).


Subject(s)
Body Mass Index , Frailty/physiopathology , Adult , Aged , Aged, 80 and over , Cognition Disorders/physiopathology , Cohort Studies , Cross-Sectional Studies , Depression , Exercise , Female , Frail Elderly/psychology , Frailty/prevention & control , Hand Strength , Humans , Life Style , Longitudinal Studies , Male , Mental Health , Middle Aged , Obesity/physiopathology , Social Support , Sociological Factors , Thinness/physiopathology , Weight Loss
2.
Sci Rep ; 7: 40901, 2017 01 19.
Article in English | MEDLINE | ID: mdl-28102354

ABSTRACT

During kidney transplantation, ischemia-reperfusion injury (IRI) induces oxidative stress. Short-term preoperative 30% dietary restriction (DR) and 3-day fasting protect against renal IRI. We investigated the contribution of macronutrients to this protection on both phenotypical and transcriptional levels. Male C57BL/6 mice were fed control food ad libitum, underwent two weeks of 30%DR, 3-day fasting, or received a protein-, carbohydrate- or fat-free diet for various periods of time. After completion of each diet, renal gene expression was investigated using microarrays. After induction of renal IRI by clamping the renal pedicles, animals were monitored seven days postoperatively for signs of IRI. In addition to 3-day fasting and two weeks 30%DR, three days of a protein-free diet protected against renal IRI as well, whereas the other diets did not. Gene expression patterns significantly overlapped between all diets except the fat-free diet. Detailed meta-analysis showed involvement of nuclear receptor signaling via transcription factors, including FOXO3, HNF4A and HMGA1. In conclusion, three days of a protein-free diet is sufficient to induce protection against renal IRI similar to 3-day fasting and two weeks of 30%DR. The elucidated network of common protective pathways and transcription factors further improves our mechanistic insight into the increased stress resistance induced by short-term DR.


Subject(s)
Caloric Restriction , Diet, Protein-Restricted , Kidney/metabolism , Animals , Forkhead Box Protein O3/genetics , Forkhead Box Protein O3/metabolism , HMGA1a Protein/genetics , HMGA1a Protein/metabolism , Hepatocyte Nuclear Factor 4/genetics , Hepatocyte Nuclear Factor 4/metabolism , Kidney/pathology , Male , Mice , Mice, Inbred C57BL , Principal Component Analysis , Reperfusion Injury/metabolism , Reperfusion Injury/pathology , Transcriptome
3.
Nature ; 537(7620): 427-431, 2016 09 15.
Article in English | MEDLINE | ID: mdl-27556946

ABSTRACT

Mice deficient in the DNA excision-repair gene Ercc1 (Ercc1∆/-) show numerous accelerated ageing features that limit their lifespan to 4-6 months. They also exhibit a 'survival response', which suppresses growth and enhances cellular maintenance. Such a response resembles the anti-ageing response induced by dietary restriction (also known as caloric restriction). Here we report that a dietary restriction of 30% tripled the median and maximal remaining lifespans of these progeroid mice, strongly retarding numerous aspects of accelerated ageing. Mice undergoing dietary restriction retained 50% more neurons and maintained full motor function far beyond the lifespan of mice fed ad libitum. Other DNA-repair-deficient, progeroid Xpg-/- (also known as Ercc5-/-) mice, a model of Cockayne syndrome, responded similarly. The dietary restriction response in Ercc1∆/- mice closely resembled the effects of dietary restriction in wild-type animals. Notably, liver tissue from Ercc1∆/- mice fed ad libitum showed preferential extinction of the expression of long genes, a phenomenon we also observed in several tissues ageing normally. This is consistent with the accumulation of stochastic, transcription-blocking lesions that affect long genes more than short ones. Dietary restriction largely prevented this declining transcriptional output and reduced the number of γH2AX DNA damage foci, indicating that dietary restriction preserves genome function by alleviating DNA damage. Our findings establish the Ercc1∆/- mouse as a powerful model organism for health-sustaining interventions, reveal potential for reducing endogenous DNA damage, facilitate a better understanding of the molecular mechanism of dietary restriction and suggest a role for counterintuitive dietary-restriction-like therapy for human progeroid genome instability syndromes and possibly neurodegeneration in general.


Subject(s)
Aging/genetics , Caloric Restriction , DNA Repair/genetics , Diet, Reducing , Genomic Instability , Animals , Brain/physiology , DNA Damage , DNA-Binding Proteins/deficiency , DNA-Binding Proteins/genetics , Endonucleases/deficiency , Endonucleases/genetics , Female , Male , Mice , Neurodegenerative Diseases/genetics , Neurodegenerative Diseases/prevention & control , Nuclear Proteins/deficiency , Nuclear Proteins/genetics , Transcription Factors/deficiency , Transcription Factors/genetics , Transcriptome
4.
Arch Toxicol ; 87(3): 505-15, 2013 Mar.
Article in English | MEDLINE | ID: mdl-23052197

ABSTRACT

The traditional 2-year cancer bioassay needs replacement by more cost-effective and predictive tests. The use of toxicogenomics in an in vitro system may provide a more high-throughput method to investigate early alterations induced by carcinogens. Recently, the differential gene expression response in wild-type and cancer-prone Xpa (-/-) p53 (+/-) primary mouse hepatocytes after exposure to benzo[a]pyrene (B[a]P) revealed downregulation of cancer-related pathways in Xpa (-/-) p53 (+/-) hepatocytes only. Here, we investigated pathway regulation upon in vivo B[a]P exposure of wild-type and Xpa (-/-) p53 (+/-) mice. In vivo transcriptomics analysis revealed a limited gene expression response in mouse livers, but with a significant induction of DNA replication and apoptotic/anti-apoptotic cellular responses in Xpa (-/-) p53 (+/-) livers only. In order to be able to make a meaningful in vivo-in vitro comparison we estimated internal in vivo B[a]P concentrations using DNA adduct levels and physiologically based kinetic modeling. Based on these results, the in vitro concentration that corresponded best with the internal in vivo dose was chosen. Comparison of in vivo and in vitro data demonstrated similarities in transcriptomics response: xenobiotic metabolism, lipid metabolism and oxidative stress. However, we were unable to detect cancer-related pathways in either wild-type or Xpa (-/-) p53 (+/-) exposed livers, which were previously found to be induced by B[a]P in Xpa (-/-) p53 (+/-) primary hepatocytes. In conclusion, we showed parallels in gene expression responses between livers and primary hepatocytes upon exposure to equivalent concentrations of B[a]P. Furthermore, we recommend considering toxicokinetics when modeling a complex in vivo endpoint with in vitro models.


Subject(s)
Benzo(a)pyrene/toxicity , Carcinogenicity Tests/methods , Carcinogens/toxicity , Gene Expression Profiling , Gene Expression Regulation, Neoplastic/drug effects , Hepatocytes/drug effects , Liver Neoplasms/chemically induced , Liver/drug effects , Animals , Apoptosis/drug effects , Apoptosis/genetics , Benzo(a)pyrene/pharmacokinetics , Carcinogens/pharmacokinetics , Cell Transformation, Neoplastic/chemically induced , Cell Transformation, Neoplastic/genetics , Cell Transformation, Neoplastic/metabolism , Cell Transformation, Neoplastic/pathology , Cells, Cultured , Computer Simulation , DNA Adducts/metabolism , DNA Replication/drug effects , Dose-Response Relationship, Drug , Hepatocytes/metabolism , Hepatocytes/pathology , High-Throughput Screening Assays , Liver/metabolism , Liver/pathology , Liver Neoplasms/genetics , Liver Neoplasms/metabolism , Liver Neoplasms/pathology , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Models, Biological , Primary Cell Culture , Risk Assessment , Transcription, Genetic/drug effects , Tumor Suppressor Protein p53/genetics , Xeroderma Pigmentosum Group A Protein/genetics
5.
Oncogene ; 30(15): 1764-72, 2011 Apr 14.
Article in English | MEDLINE | ID: mdl-21151170

ABSTRACT

The p53 gene is frequently mutated in cancers and it is vital for cell cycle control, homeostasis and carcinogenesis. We describe a novel p53 mutational spectrum, different to those generally observed in human and murine tumors. Our study shows a high prevalence of nonsense mutations in the p53 N terminus of 2-acetylaminofluorene (2-AAF)-induced urinary bladder tumors. These nonsense mutations forced downstream translation initiation at codon 41 of Trp53, resulting in the aberrant expression of the p53 isoform ΔN-p53 (or p44). We propose a novel mechanism for the origination and the selection for this isoform. We show that chemical exposure can act as a novel cause of selection for this truncated protein. In addition, our data suggest that the occurrence of ΔN-p53 accounts, at least in mice, for a cancer phenotype. We also show that gene expression profiles of embryonic stem (ES) cells carrying the ΔN-p53 isoform in a p53-null background are divergent from p53 knockout ES cells, and therefore postulate that ΔN-p53 itself has functional transcriptional properties.


Subject(s)
Genes, p53 , Mutagens/toxicity , Protein Isoforms/genetics , Animals , Codon, Nonsense , Gene Expression Profiling , Humans , Mice
6.
Food Chem Toxicol ; 46(2): 527-36, 2008 Feb.
Article in English | MEDLINE | ID: mdl-17936466

ABSTRACT

We investigated whether inhaling peak concentrations of aldehydes several times daily is more damaging than semi-continuously inhaling low-dose aldehydes. We exposed Xpa-/-p53+/- knock-out mice either intermittently or semi-continuously to mixed acetaldehyde, formaldehyde, and acrolein. The intermittent regimen entailed exposure to the aldehydes 7 min every 45 min, 12 times/day, 5 days/week, corresponding to concentrations inhaled by smokers. Semi-continuously exposed animals received half the dose of aldehydes in 8h/day, 5 days/week. Some mice in each group were sacrificed after 13 weeks of exposure; the rest breathed clean air until the end of 1 year. Mice injected intratracheally with benzo[a]pyrene formed a positive control group. The nasal cavity, lungs, and any macroscopically abnormal organs of all mice were analysed histopathologically. After 13 weeks of exposure, the subacute, overall, histopathological changes induced by the inhalation differed noticeably between the intermittently and semi-continuously treated Xpa-/-p53+/- knock-out mice. After 13 weeks of mixed aldehyde exposure, atrophy of the olfactory epithelium generally appeared, but disappeared after 1 year (adaptation and/or recovery). Respiratory epithelial metaplasia of the olfactory epithelium occurred at a higher incidence at 1 year. Except for a significantly greater number of tumours observed in knock-out mice compared to wild mice (semi-continuous aldehyde exposure and controls), no differences between the semi-continuous and intermittent exposure groups were observed.


Subject(s)
Acetaldehyde/toxicity , Acrolein/toxicity , Disinfectants/toxicity , Formaldehyde/toxicity , Lung/drug effects , Olfactory Mucosa/drug effects , Smoke/adverse effects , Acetaldehyde/administration & dosage , Acetaldehyde/analysis , Acrolein/administration & dosage , Acrolein/analysis , Administration, Inhalation , Animals , Atmosphere Exposure Chambers , Disinfectants/administration & dosage , Disinfectants/analysis , Female , Formaldehyde/administration & dosage , Formaldehyde/analysis , Humans , Lung/pathology , Male , Metaplasia/chemically induced , Mice , Mice, Knockout , Olfactory Mucosa/pathology , Smoke/analysis , Species Specificity
7.
Biochim Biophys Acta ; 1773(6): 990-9, 2007 Jun.
Article in English | MEDLINE | ID: mdl-17467074

ABSTRACT

Because thyroid nodules are frequent in areas with iodine deficiency the aim of this study was to characterise molecular events during iodine deficiency that could explain mutagenesis and nodule formation. We therefore studied gene expression of catalytic enzymes prominent for H(2)O(2) detoxification and antioxidative defence, quantified DNA oxidation and damage as well as spontaneous mutation rates (SMR) in mice and rats fed an iodine controlled diet. Antioxidative enzymes such as superoxide dismutase 3, glutathione peroxidase 4 and the peroxiredoxins 3 and 5 showed increased mRNA expression, which indicates increased radical burden that could be the cause of additional oxidized base adducts found in thyroidal genomic DNA in our experiments of iodine deficiency. Furthermore, the uracil content of thyroid DNA was significantly higher in the iodine-deficient compared to the control group. While SMR is very high in the normal thyroid gland it is not changed in experimental iodine deficiency. Our data suggest that iodine restriction causes oxidative stress and DNA modifications. A higher uracil content of the thyroid DNA could be a precondition for C-->T transitions often detected as somatic mutations in nodular thyroid tissue. However, the absence of increased SMR would argue for more efficient DNA repair in response to iodine restriction.


Subject(s)
Antioxidants/metabolism , DNA Damage , Gene Expression Regulation, Enzymologic , Iodine/deficiency , Oxidoreductases/biosynthesis , Thyroid Gland/enzymology , Animals , DNA Repair , Hydrogen Peroxide/metabolism , Mice , Mice, Inbred BALB C , Mice, Transgenic , Mutagenesis , Oxidation-Reduction , Oxidoreductases/genetics , Point Mutation , Rats , Rats, Wistar , Thyroid Gland/pathology , Thyroid Nodule/enzymology , Thyroid Nodule/pathology , Uracil/metabolism
8.
Endocrinology ; 147(7): 3391-7, 2006 Jul.
Article in English | MEDLINE | ID: mdl-16627585

ABSTRACT

Thyroid tumors are a frequent finding not only in iodine-deficient regions. They are predominantly characterized by somatic genetic changes (e.g. point mutations or rearrangements). Because slow thyroid proliferation is a apparent contradiction to a high frequency of tumor initiation, we characterized mutational events in thyroid. First we studied the frequency of certain base exchanges in somatic TSH receptor (TSHR) mutations and determined the spontaneous mutation rate in thyroid and liver. Then we applied different protocols of the comet assay to quantify genomic DNA damage and conducted immunohistochemistry for 8-oxoguanine as a molecular marker for oxidative stress. Among 184 somatic mutations of the human TSHR found in thyroid tumors, C-->T transitions had a unexpectedly high frequency (>32%). The mutation rate in thyroid is 8-10 times higher than in other organs. The comet assay detected increased levels of oxidized pyrimidine (2- to 3-fold) and purine (2- to 4-fold) in thyroid, compared with liver and lung, and a 1.6-fold increase of oxidized purine, compared with spleen. Immunohistochemistry revealed high levels of 8-oxoguanine in thyroid epithelial cells. We have shown a strikingly high mutation rate in the thyroid. Furthermore, results of the comet assay as well as immunohistochemistry suggest that oxidative DNA modifications are a likely cause of the higher mutation rate. It is possible that free radicals resulting from reactive oxygen species in the thyroid generate mutations more frequently. This is also supported by the spectrum of somatic mutations in the TSHR because more frequent base changes could stem from oxidized base adducts that we detected in the comet assay and with immunohistochemistry.


Subject(s)
DNA Damage , Mutagenesis , Thyroid Gland/pathology , Animals , Cell Proliferation , Comet Assay , Female , Male , Mice , Mice, Inbred BALB C , Mice, Inbred C57BL , Mice, Transgenic , Rats , Rats, Wistar , Reactive Oxygen Species , Thyroid Gland/metabolism
9.
Mutat Res ; 540(2): 165-76, 2003 Oct 07.
Article in English | MEDLINE | ID: mdl-14550500

ABSTRACT

Genetically altered mouse models (GAMM) for human cancers have been critical to the investigation and characterization of oncogene and tumor suppressor gene expression and function and the associated cancer phenotype. Similarly, several of the mouse models with defined genetic alterations have shown promise for identification of potential human carcinogens and investigation of mechanisms of carcinogen-gene interactions and tumorigenesis. In particular, both the B6.129N5-Trp53 mouse, heterozygous for a p53 null allele, and the CB6F1-RasH2 mouse, hemizygous for the human H-ras transgene, have been extensively investigated. Using 26-week exposure protocols at or approaching the maximum tolerated dose, the summary results to date indicate the potential for GAMM to identify and, possibly, classify chemicals of potential risk to humans using short-term carcinogenicity experiments. This IWGT session focused on: (1) the development of recommendations for genetic/molecular characterization required in animals, tissues, and tumors before and after treatment for identification of presumptive human carcinogens based on the current state of knowledge, (2) identification of data gaps in our current state of knowledge, and (3) development of recommendations for research strategies for further development of our knowledge base of these particular models. By optimization of protocols and identification of significant outcomes and responses to chemical exposure in appropriate short-term mechanism-based genetically altered rodent models, strategies for prevention and intervention may be developed and employed to the benefit of public health.


Subject(s)
Biological Assay/standards , Genes, Tumor Suppressor , Tumor Suppressor Protein p53/genetics , ras Proteins/genetics , Animals , Carcinogenicity Tests/standards , Disease Models, Animal , Mice , Tumor Suppressor Protein p53/deficiency , ras Proteins/metabolism
10.
Toxicol Pathol ; 29 Suppl: 109-16, 2001.
Article in English | MEDLINE | ID: mdl-11695546

ABSTRACT

Xeroderma pigmentosum (XP) is a rare autosomal recessive disease in which repair of ultraviolet (UV)-induced DNA damage is impaired or is totally absent due to mutations in genes controlling the DNA repair pathway known as nucleotide excision repair (NER). XP is characterized, in part, by extreme sensitivity of the skin to sunlight, and XP patients have a more than 1000-fold increased risk of developing cancer at sun-exposed areas of the skin. To study the role of NER in chemical-induced tumorigenesis in more detail, the authors developed Xpa-/- homozygous knockout mice with a complete defect in NER (designated as Xpa mice or XPA model). Xpa mice develop skin tumors at high frequency when exposed to UV light, and as such, they mimic the phenotype of human XP. Moreover, the Xpa mice also appear to be susceptible to genotoxic carcinogens given orally. Based on these phenotypic characteristics, the Xpa mice were considered to be an attractive candidate mouse model for use in identifying human carcinogens. In an attempt to further increase both the sensitivity and specificity of the XPA model in carcinogenicity testing, the authors crossed Xpa mice with mice having a heterozygous defect in the tumor suppressor gene p53. Xpa/p53+/- double knockout mice develop tumors earlier and with higher incidences upon exposure to carcinogens as compared to their single knockout counterparts. Here the authors describe the development and features of the Xpa mouse and present some examples of the Xpa and Xpa/p53+/- mouse models' sensitivity towards genotoxic carcinogens. It appeared that the Xpa/p53+/- double knockout mouse model is favorable over both the Xpa and p53+/- single knockout models in short-term carcinogenicity testing. In addition to the fact that the double knockout mice respond more robustly to carcinogens, they also appear to respond in a very discriminative way. All compounds identified thus far are true (human) carcinogens, and, therefore, the authors believe that the Xpa/p53+/- mouse model is an excellent candidate for a future replacement of the chronic mouse bioassay, at least for certain classes of chemicals.


Subject(s)
Carcinogenicity Tests/methods , DNA Repair/genetics , DNA-Binding Proteins/genetics , Disease Models, Animal , Genes, p53 , RNA-Binding Proteins/genetics , Skin Neoplasms/genetics , Xeroderma Pigmentosum/genetics , Animal Testing Alternatives , Animals , Carcinogens/toxicity , DNA-Binding Proteins/deficiency , Genotype , Humans , Mice , Mice, Knockout , Mice, Transgenic , Mutagens/toxicity , Neoplasms, Radiation-Induced/etiology , Neoplasms, Radiation-Induced/genetics , Skin Neoplasms/chemically induced , Ultraviolet Rays , Xeroderma Pigmentosum Group A Protein
11.
Toxicol Pathol ; 29 Suppl: 117-27, 2001.
Article in English | MEDLINE | ID: mdl-11695547

ABSTRACT

DNA repair deficient Xpa-/- and Xpa-/-/p53+/- knock-out mice in a C57BL/6 genetic background, referred to as respectively the XPA and XPA/p53 model, were investigated in the international collaborative research program coordinated by International Life Sciences Institute (ILSI)/Health and Environmental Science Institute. From the selected list of 21 ILSI compounds, 13 were tested in the XPA model, and 10 in the XPA/p53 model. With one exception, all studies had a duration of 9 months (39 weeks). The observed spontaneous tumor incidence for the XPA model after 9 months was comparable to that of wild-type mice (total 6%). For the XPA/p53 model, this was somewhat higher (9%/13% for males/females). The 3 positive control compounds used, B[a]P, p-cresidine, and 2-AAF, gave positive and consistent tumor responses in both the XPA and XPA/p53 model, but no or lower responses in wild-type mice. From the 13 ILSI compounds tested, the single genotoxic carcinogen (phenacetin) was negative in both the XPA and XPA/p53 model. Positive tumor responses were observed for 4 compounds, the immunosuppressant cyclosporin A, the hormone carcinogens DES and estradiol, and the peroxisome proliferator WY-14,643. Negative results were obtained with 5 other nongenotoxic rodent carcinogens, and 2 noncarcinogens tested. As expected, both DNA repair deficient models respond to genotoxic carcinogens. Combined with previous results, 6 out of 7 (86%) of the genotoxic human and/or rodent carcinogens tested are positive in the XPA model. The positive results obtained with the 4 mentioned nongenotoxic ILSI compounds may point to other carcinogenic mechanisms involved, or may raise some doubts about their true nongenotoxic nature. In general. the XPA/p53 model appears to be more sensitive to carcinogens than the XPA model.


Subject(s)
Carcinogenicity Tests/methods , Carcinogens/toxicity , DNA-Binding Proteins/genetics , Genes, p53 , Mutagens/toxicity , Neoplasms, Experimental/chemically induced , RNA-Binding Proteins/genetics , Academies and Institutes , Animal Testing Alternatives , Animals , DNA Repair/genetics , DNA-Binding Proteins/deficiency , Disease Models, Animal , Dose-Response Relationship, Drug , Female , International Cooperation , Male , Mice , Mice, Knockout , Mice, Transgenic , Neoplasms, Experimental/genetics , Societies, Scientific , Xeroderma Pigmentosum Group A Protein
12.
J Invest Dermatol ; 117(5): 1234-40, 2001 Nov.
Article in English | MEDLINE | ID: mdl-11710938

ABSTRACT

The stratum corneum and DNA repair do not completely protect keratinocytes from ultraviolet B. A third defense prevents cells with DNA photoproducts from becoming precancerous mutant cells: apoptosis of ultraviolet-damaged keratinocytes ("sunburn cells"). As signals for ultraviolet-induced apoptosis, some studies implicate DNA photoproducts in actively transcribed genes; other studies implicate non-nuclear signals. We traced and quantitated the in vivo DNA signal through several steps in the apoptosis-signaling pathway in haired mice. Homozygous inactivation of Xpa, Csb, or Xpc nucleotide excision repair genes directed the accumulation of DNA photoproducts to specific genome regions. Repair-defective Xpa-/- mice were 7-10-fold more sensitive to sunburn cell induction than wild-type mice, indicating that 86-90% of the ultraviolet B signal for keratinocyte apoptosis involved repairable photoproducts in DNA; the remainder involves unrepaired DNA lesions or nongenomic targets. Csb-/- mice, defective only in excising photoproducts from actively transcribed genes, were as sensitive as Xpa-/-, indicating that virtually all of the DNA signal originates from photoproducts in active genes. Conversely, Xpc-/- mice, defective in repairing the untranscribed majority of the genome, were as resistant to apoptosis as wild type. Sunburn cell formation requires the Trp53 tumor suppressor protein; 90-96% of the signal for its induction in vivo involved transcribed genes. Mdm2, which regulates the stability of Trp53 through degradation, was induced in vivo by low ultraviolet B doses but was suppressed at erythemal doses. DNA photoproducts in actively transcribed genes were involved in approximately 89% of the Mdm2 response.


Subject(s)
DNA Damage/physiology , Nuclear Proteins , Proto-Oncogene Proteins/physiology , Sunburn/pathology , Transcription, Genetic/physiology , Tumor Suppressor Protein p53/metabolism , Animals , Apoptosis/physiology , DNA/radiation effects , Dose-Response Relationship, Radiation , Erythema/etiology , Genome , Mice , Proto-Oncogene Proteins/antagonists & inhibitors , Proto-Oncogene Proteins c-mdm2 , Radiation Injuries/complications , Signal Transduction/physiology , Ultraviolet Rays
13.
J Invest Dermatol ; 117(1): 141-6, 2001 Jul.
Article in English | MEDLINE | ID: mdl-11442761

ABSTRACT

Ultraviolet B irradiation has serious consequences for cellular immunity and can suppress the rejection of skin tumors and the resistance to infectious diseases. DNA damage plays a crucial role in these immunomodulatory effects of ultraviolet B, as impaired repair of ultraviolet-B-induced DNA damage has been shown to cause suppression of cellular immunity. Ultraviolet-B-induced DNA damage is repaired by the nucleotide excision repair mechanism very efficiently. Nucleotide excision repair comprises two subpathways: transcription-coupled and global genome repair. In this study the immunologic consequences of specific nucleotide excision repair defects in three mouse models, XPA, XPC, and CSB mutant mice, were investigated. XPA mice carry a total nucleotide excision repair defect, whereas XPC and CSB mice only lack global genome and transcription-coupled nucleotide excision repair, respectively. Our data demonstrate that cellular immune parameters in XPA, XPC, and CSB mice are normal compared with their wild-type (control) littermates. This may indicate that the reported altered cellular responses in xeroderma pigmentosum patients are not constitutive but could be due to external factors, such as ultraviolet B. Upon exposure to ultraviolet B, only XPA mice are very sensitive to ultraviolet-B-induced inhibition of Th1-mediated contact hypersensitivity responses and interferon-gamma production in skin draining lymph nodes. Lipopolysaccharide-stimulated tumor necrosis factor alpha and interleukin-10 production are significantly augmented in both XPA and CSB mice after ultraviolet B exposure. Lymph node cell numbers were increased very significantly in XPA, mildly increased in CSB, and not in XPC mice. In general XPC mice do not exhibit any indication of enhanced ultraviolet B susceptibility with regard to the immune parameters analyzed. These data suggest that both global genome repair and transcription-coupled repair are needed to prevent immunomodulation by ultraviolet B, whereas transcription-coupled repair is the major DNA repair subpathway of nucleotide excision repair that prevents the acute ultraviolet-B-induced effects such as erythema.


Subject(s)
Adjuvants, Immunologic/radiation effects , DNA Helicases/genetics , DNA Repair/immunology , DNA-Binding Proteins/genetics , RNA-Binding Proteins/genetics , Repressor Proteins/genetics , Transcription Factors , Xenopus Proteins , Animals , Antigen Presentation/immunology , B-Lymphocytes/immunology , DNA Repair/genetics , DNA Repair Enzymes , Hyperplasia , Interferon-gamma/biosynthesis , Interleukin-10/biosynthesis , Lymph Nodes/immunology , Lymph Nodes/metabolism , Lymph Nodes/pathology , Mice , Mice, Inbred C57BL , Mice, Knockout , Poly-ADP-Ribose Binding Proteins , Skin/immunology , Skin/radiation effects , Th1 Cells/immunology , Th1 Cells/metabolism , Tumor Necrosis Factor-alpha/biosynthesis , Ultraviolet Rays , Xeroderma Pigmentosum Group A Protein
14.
Toxicol Lett ; 120(1-3): 209-19, 2001 Mar 31.
Article in English | MEDLINE | ID: mdl-11323179

ABSTRACT

Xpa mice, which have a completely defective nucleotide excision repair (NER) pathway, have a cancer predisposition when exposed to several carcinogens. NER is one of the major DNA repair pathways in the mammalian cell, and is involved in the removal of a wide variety of DNA lesions, such as those induced by UV light, bulky adducts and DNA crosslinks. To study the role of NER in both mutagenesis and carcinogenesis, NER-defective Xpa mice were crossed with transgenic lacZ/pUR288 mutation-indicator mice. Furthermore, the relationship between the tumor suppressor gene p53, NER, induction of mutations and tumor development was studied in Xpa/p53+/-/lacZ triple transgenic mice. Using the genotoxic carcinogens benzo[a]pyrene (B[a]P) and 2-acetylaminofluorene (2-AAF), it is shown that mutations in the inactive (non-transcribed) lacZ reporter gene reliably predict cancer risk. In tissues at risk for the development of tumors, increased mutant frequencies could be found at much earlier stages. A heterozygous loss of p53 appears to act synergistically to a NER defect, both in mutation- as well as tumor-induction. Surprisingly, however, the effect of a heterozygous loss of p53 appeared to be tissue-restricted, being apparent in the bladder but absent in liver and spleen.


Subject(s)
DNA Repair , Genes, p53/physiology , Mutation , Neoplasms/etiology , 2-Acetylaminofluorene/toxicity , Animals , Humans , Lac Operon
15.
Cancer Res ; 61(3): 977-83, 2001 Feb 01.
Article in English | MEDLINE | ID: mdl-11221893

ABSTRACT

p53 mutations appear to be early events in skin carcinogenesis induced by chronic UVB irradiation. Clusters of epidermal cells that express p53 in mutant conformation ("p53 positive foci") are easily detected by immunohistochemical staining long before the appearance of skin carcinomas or their precursor lesions. In a hairless mouse model, we determined the dose-time dependency of the induction of these p53+ foci and investigated the relationship with the induction of skin carcinomas. The density of p53+ foci may be a good direct indicator of tumor risk. Hairless SKH1 mice were exposed to either of two regimens of daily UVB (500 or 250 J/m2 broadband UV from Philips TL12 lamps; 54% UVB 280-315 nm). With the high-dose regimen, the average number of p53+ foci in a dorsal skin area (7.2 cm2) increased rapidly from 9.0 +/- 2.1 (SE) at 15 days to 470 +/- 80 (SE) at 40 days. At half that daily dose, the induction of p53+ foci was slower by a factor of 1.49 +/- 0.15, very similar to a previously observed slower induction of squamous cell carcinomas by a factor of 1.54 +/- 0.02. In a double-log plot of the average number of p53 + foci versus time, the curves for the two exposure regimens ran parallel (slope, 3.7 +/- 0.7), similar to the curves for the number of tumors versus time (slope, 6.9 +/- 0.8). The difference in slopes (3.7 versus 6.9) is in line with the contention that more rate-limiting steps are needed to develop a tumor than a p53+ focus. By the time the first tumors appear (around 7-8 weeks with the high daily dose), the dorsal skin contains >100 p53+ foci/cm2. To further validate the density of p53+ foci as a direct measure of tumor risk, we carried out experiments with transgenic mice with an enhanced susceptibility to UV carcinogenesis, homozygous Xpa knockout mice (deficient in nucleotide excision repair) and heterozygousp53 knockout mice (i.a. partially deficient in apoptosis). In both of these cancer-prone strains, the p53+ foci were induced at markedly increased rates, corresponding to increased rates of carcinoma formation. Therefore, the frequency of p53+ foci appears to correlate well with UVB-induced tumor risk.


Subject(s)
DNA Repair/physiology , Genes, p53/genetics , Neoplasms, Radiation-Induced/etiology , Skin Neoplasms/etiology , Skin/metabolism , Skin/radiation effects , Tumor Suppressor Protein p53/biosynthesis , Animals , DNA-Binding Proteins/deficiency , DNA-Binding Proteins/genetics , Dose-Response Relationship, Radiation , Female , Heterozygote , Kinetics , Male , Mice , Mice, Hairless , Mice, Knockout , Neoplasms, Radiation-Induced/genetics , Neoplasms, Radiation-Induced/metabolism , RNA-Binding Proteins/genetics , Risk Factors , Skin Neoplasms/genetics , Skin Neoplasms/metabolism , Ultraviolet Rays/adverse effects , Xeroderma Pigmentosum Group A Protein
16.
Cancer Res ; 60(20): 5681-7, 2000 Oct 15.
Article in English | MEDLINE | ID: mdl-11059760

ABSTRACT

Cockayne syndrome (CS) patients are deficient in the transcription coupled repair (TCR) subpathway of nucleotide excision repair (NER) but in contrast to xeroderma pigmentosum patients, who have a defect in the global genome repair subpathway of NER, CS patients do not have an elevated cancer incidence. To determine to what extent a TCR deficiency affects carcinogen-induced mutagenesis and carcinogenesis, CS group B correcting gene (CSB)-deficient mice were treated with the genotoxic carcinogen benzo(a)pyrene (B[a]P) at an oral dose of 13 mg/kg body weight, three times a week. At different time points, mutant frequencies at the inactive lacZ gene (in spleen, liver, and lung) as well as at the active hypoxanthine phosphoribosyltransferase (Hprt) gene (in spleen) were determined to compare mutagenesis at inactive versus active genes. B[a]P treatment gave rise to increased mutant frequencies at lacZ in all of the organs tested without a significant difference between CSB-/- and wild-type mice, whereas B[a]P-induced Hprt mutant frequencies in splenic T-lymphocytes were significantly more enhanced in CSB-/- mice than in control mice. The sequence data obtained from Hprt mutants indicate that B[a]P adducts at guanine residues were preferentially removed from the transcribed strand of the Hprt gene in control mice but not in CSB-/- mice. On oral treatment with B[a]P, the tumor incidence increased in both wild-type and CSB-deficient animals. However, no differences in tumor rate were observed between TCR-deficient CSB-/- mice and wild-type mice, which is in line with the normal cancer susceptibility of CS patients. The mutagenic response at lacZ, in contrast to Hprt, correlated well with the cancer incidence in CSB-/- mice after B[a]P treatment, which suggests that mutations in the bulk of the DNA (inactive genes) are a better predictive marker for carcinogen-induced tumorigenesis than mutations in genes that are actively transcribed. Thus, the global genome repair pathway of NER appears to play an important role in the prevention of cancer.


Subject(s)
Benzo(a)pyrene/toxicity , Carcinogens/toxicity , Cocarcinogenesis , Cockayne Syndrome/genetics , DNA Repair/genetics , Mutagenesis/drug effects , Neoplasms, Experimental/etiology , Animals , Crosses, Genetic , DNA/genetics , Female , Gene Expression , Genetic Predisposition to Disease/genetics , Hypoxanthine Phosphoribosyltransferase/genetics , Lac Operon/drug effects , Lac Operon/genetics , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Mutagenesis/genetics , Neoplasms, Experimental/chemically induced , Neoplasms, Experimental/genetics , Predictive Value of Tests , Transcription, Genetic/genetics
17.
Oncogene ; 19(43): 5034-7, 2000 Oct 12.
Article in English | MEDLINE | ID: mdl-11042691

ABSTRACT

DNA damages caused by cellular metabolites and environmental agents induce mutations, that may predispose to cancer. Nucleotide excision repair (NER) is a major cellular defence mechanism acting on a variety of DNA lesions. Here, we show that spontaneous mutant frequencies at the Hprt gene increased 30-fold in T-lymphocytes of 1 year old Xpc-/- mice, possessing only functional transcription-coupled repair (TCR). Hprt mutant frequencies in Xpa-/- and Csb-/- mice that both have a defect in this NER subpathway, remained low during ageing. In contrast to current models, the elevated mutation rate in Xpc-/- mice does not lead to an increased tumour incidence or premature ageing. Oncogene (2000) 19, 5034 - 5037


Subject(s)
Aging/genetics , DNA Repair/genetics , Mutagenesis , Xeroderma Pigmentosum/genetics , Animals , Female , Genetic Predisposition to Disease , Hypoxanthine Phosphoribosyltransferase/genetics , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Mice, Transgenic , Neoplasms, Experimental/genetics , Spleen/cytology , T-Lymphocytes/physiology , Transcription, Genetic/genetics
18.
Proc Natl Acad Sci U S A ; 97(21): 11268-73, 2000 Oct 10.
Article in English | MEDLINE | ID: mdl-11005836

ABSTRACT

Nucleotide excision repair (NER), apoptosis, and cell-cycle regulation are major defense mechanisms against the carcinogenic effects of UVB light. NER eliminates UVB-induced DNA photolesions via two subpathways: global genome repair (GGR) and transcription-coupled repair (TCR). Defects in NER result in the human disorders xeroderma pigmentosum (XP) and Cockayne syndrome (CS), displaying severe UV sensitivity and in the case of XP, cancer proneness. We investigated the impact of deficiencies in NER subpathways on apoptosis, hyperplasia, and cell cycle progression in the epidermis of UVB-exposed CS group B (Csb(-/-)) mice (no TCR), XP group C (Xpc(-/-)) mice (no GGR), and XP group A (Xpa(-/-)) mice (no TCR and no GGR). On UVB treatment (250 J/m(2)), Xpa(-/-) and Csb(-/-) mice revealed an extensive apoptotic response in the skin, a blockage of cell cycle progression of epidermal cells, and strong hyperplasia. Interestingly, the absence of this apoptotic response in the skin of wild-type and Xpc(-/-) mice coincided with the ability of epidermal cells to enter the S phase. However, only epidermal cells of Xpc(-/-) mice subsequently became arrested in the G(2) phase. Our data demonstrate that TCR (and/or restoration of UVB-inhibited transcription) enables damaged cells to progress through S phase and prevents the induction of apoptosis and hyperplasia. G(2) arrest is manifest only under conditions of proficient TCR in combination with deficient GGR, indicating that epidermal cells become arrested in the G(2) phase as a result of persisting damage in their genome.


Subject(s)
Apoptosis/radiation effects , DNA Repair/genetics , Epidermis/radiation effects , G2 Phase/radiation effects , Transcription, Genetic , Animals , Epidermal Cells , Humans , Mice , Mice, Hairless , Mice, Transgenic , Receptors, Antigen, T-Cell/genetics , Receptors, Antigen, T-Cell/physiology , S Phase , Ultraviolet Rays
19.
Mutat Res ; 450(1-2): 167-80, 2000 May 30.
Article in English | MEDLINE | ID: mdl-10838141

ABSTRACT

Mice with a defect in the xeroderma pigmentosum group A (XPA) gene have a complete deficiency in nucleotide excision repair (NER). As such, these mice mimic the human XP phenotype in that they have a >1000-fold higher risk of developing UV-induced skin cancer. Besides being UV-sensitive, XPA(-/-) mice also develop internal tumors when they are exposed to chemical carcinogens. To investigate the effect of a total NER deficiency on the induction of gene mutations and tumor development, we crossed XPA(-/-) mice with transgenic lacZ/pUR288 mutation-indicator mice. The mice were treated with various agents and chemicals like UV-B, benzo[a]pyrene and 2-aceto-amino-fluorene. Gene mutation induction in several tumor target- and non-target tissues was determined in both the bacterial lacZ reporter gene and in the endogenous Hprt gene. Furthermore, alterations in the p53- and ras genes were determined in UV-induced skin tumors of XPA(-/-) mice. In this work, we review these results and discuss the applicability and reliability of enhanced gene mutant frequencies as early indicators of tumorigenesis.


Subject(s)
Cocarcinogenesis , DNA Repair/genetics , DNA-Binding Proteins/genetics , Mutagenesis , RNA-Binding Proteins/genetics , 2-Acetylaminofluorene/toxicity , Animals , Base Sequence , Benzo(a)pyrene/toxicity , DNA, Neoplasm/genetics , Humans , Hypoxanthine Phosphoribosyltransferase/genetics , Lac Operon , Mice , Mice, Knockout , Mice, Transgenic , Models, Genetic , Neoplasms, Radiation-Induced/etiology , Neoplasms, Radiation-Induced/genetics , Neoplasms, Radiation-Induced/metabolism , Skin Neoplasms/etiology , Skin Neoplasms/genetics , Skin Neoplasms/metabolism , Ultraviolet Rays/adverse effects , Xeroderma Pigmentosum/genetics , Xeroderma Pigmentosum/metabolism , Xeroderma Pigmentosum Group A Protein
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