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1.
Cells ; 9(5)2020 05 08.
Article in English | MEDLINE | ID: mdl-32397240

ABSTRACT

The replication independent (RI) histone H2A.Z is one of the more extensively studied variant members of the core histone H2A family, which consists of many replication dependent (RD) members. The protein has been shown to be indispensable for survival, and involved in multiple roles from DNA damage to chromosome segregation, replication, and transcription. However, its functional involvement in gene expression is controversial. Moreover, the variant in several groups of metazoan organisms consists of two main isoforms (H2A.Z-1 and H2A.Z-2) that differ in a few (3-6) amino acids. They comprise the main topic of this review, starting from the events that led to their identification, what is currently known about them, followed by further experimental, structural, and functional insight into their roles. Despite their structural differences, a direct correlation to their functional variability remains enigmatic. As all of this is being elucidated, it appears that a strong functional involvement of isoform variability may be connected to development.


Subject(s)
Histones/metabolism , Amino Acid Sequence , Animals , Brain/metabolism , Cell Cycle , Chickens , Chromatin/metabolism , DNA Methylation , Histones/chemistry , Humans , Liver/metabolism , Male , Mice , Nucleosomes/metabolism , Osmolar Concentration , Phylogeny , Protein Isoforms/chemistry , Protein Isoforms/metabolism , Spermatogenesis
2.
Oncotarget ; 9(97): 37054-37068, 2018 Dec 11.
Article in English | MEDLINE | ID: mdl-30651935

ABSTRACT

Epigenetic mechanisms involved in prostate cancer include hypermethylation of tumor suppressor genes, general hypomethylation of the genome, and alterations in histone posttranslational modifications (PTMs). In addition, over expression of the histone variant H2A.Z as well as deregulated expression of Polycomb group proteins including EZH2 have been well-documented. Recent evidence supports a role for metformin in prostate cancer (PCa) treatment. However, the mechanism of action of metformin in PCa is poorly understood. We provide data showing that metformin epigenetically targets PCa by altering the levels and gene binding dynamics of histone variant H2A.Z. Moreover, we show that the increase in H2A.Z upon metformin treatment occurs preferentially due to H2A.Z.1 isoform. Chromatin immunoprecipitation (ChIP)-RT PCR analysis indicates that metformin treatment results in an increased H2A.Z occupancy on the androgen receptor (AR) and AR-regulated genes that is more prominent in the androgen dependent AR positive LNCaP cells. Repression of H2A.Z.1 gene by siRNA-mediated knock down identified this H2A.Z isoform to be responsible. Based on preliminary data with an EZH2-specific inhibitor, we suggest that the effects of metformin on the early stages of PCa may involve both EZH2 and H2A.Z through the alteration of different molecular pathways.

3.
Cancer Metastasis Rev ; 33(2-3): 429-39, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24398858

ABSTRACT

Genetic and epigenetic changes are at the root of all cancers. The epigenetic component involves alterations of the post-synthetic modifications of DNA (methylation) and histones (histone posttranslational modifications, PTMs) as well as of those of their molecular "writers," "readers," and "erasers." Noncoding RNAs (ncRNA) can also play a role. Here, we focus on the involvement of histone alterations in cancer, in particular that of the histone variant H2A.Z in the etiology of prostate cancer. The structural mechanisms putatively responsible for the contribution of H2A.Z to oncogenic gene expression programs are first described, followed by what is currently known about the involvement of this histone variant in the regulation of androgen receptor regulated gene expression. The implications of this and their relevance to oncogene deregulation in different stages of prostate cancer, including the progression toward androgen independence, are discussed. This review underscores the increasing awareness of the epigenetic contribution of histone variants to oncogenic progression.


Subject(s)
Gene Expression Regulation, Neoplastic , Histones/metabolism , Prostatic Neoplasms/genetics , Prostatic Neoplasms/metabolism , Animals , Disease Progression , Epigenesis, Genetic , Histones/genetics , Humans , Male , Prostatic Neoplasms/pathology , Receptors, Androgen/metabolism
4.
Cancer Lett ; 315(1): 38-47, 2012 Feb 01.
Article in English | MEDLINE | ID: mdl-22055461

ABSTRACT

The histone variant H2A.Z is present at many eukaryotic gene regulatory regions and can affect rates of transcription. Here we show that total H2A.Z and an acetylated form of H2A.Z is mainly present at the prostate specific antigen (PSA) enhancer and promoter in prostate cancer cell lines where the gene is expressed, but the levels decrease during rapid cycles of transcription. Treatment of prostate cancer cells with androgen results in increased H2A.Z levels due to upregulation of the H2A.Z-1, but not the H2A.Z-2 gene. This upregulation is likely the result of increased MYC transcription factor binding that occurs in response to androgen at the H2A.Z-1 promoter. Furthermore, we show that in a LNCaP xenograft model of prostate cancer progression, there is a significant increase of H2A.Z protein in castration resistant LNCaP tumors resulting from increased expression of the H2A.Z-1 gene. While a similar trend was observed in samples from prostate cancer patients, the results were not statistically significant. Nevertheless, there may be a subset of prostate cancers where elevated expression of H2A.Z-1 is indicative of prostate cancer progression to androgen independence.


Subject(s)
Histones/genetics , Prostate-Specific Antigen/genetics , Prostatic Neoplasms/genetics , Receptors, Androgen/genetics , Animals , Disease Progression , Gene Expression Regulation, Neoplastic , Histones/metabolism , Humans , Male , Mice , Mice, Nude , Neoplasms, Hormone-Dependent/genetics , Neoplasms, Hormone-Dependent/metabolism , Neoplasms, Hormone-Dependent/pathology , Prostate-Specific Antigen/metabolism , Prostatic Neoplasms/metabolism , Prostatic Neoplasms/pathology , Receptors, Androgen/metabolism , Transcriptional Activation , Up-Regulation
5.
BMC Biol ; 7: 86, 2009 Dec 14.
Article in English | MEDLINE | ID: mdl-20003410

ABSTRACT

BACKGROUND: Within chromatin, the histone variant H2A.Z plays a role in many diverse nuclear processes including transcription, preventing the spread of heterochromatin and epigenetic transcriptional memory. The molecular mechanisms of how H2A.Z mediates its effects are not entirely understood. However, it is now known that H2A.Z has two protein isoforms in vertebrates, H2A.Z-1 and H2A.Z-2, which are encoded by separate genes and differ by 3 amino acid residues. RESULTS: We report that H2A.Z-1 and H2A.Z-2 are expressed across a wide range of human tissues, they are both acetylated at lysine residues within the N-terminal region and they exhibit similar, but nonidentical, distributions within chromatin. Our results suggest that H2A.Z-2 preferentially associates with H3 trimethylated at lysine 4 compared to H2A.Z-1. The phylogenetic analysis of the promoter regions of H2A.Z-1 and H2A.Z-2 indicate that they have evolved separately during vertebrate evolution. CONCLUSIONS: Our biochemical, gene expression, and phylogenetic data suggest that the H2A.Z-1 and H2A.Z-2 variants function similarly yet they may have acquired a degree of functional independence.


Subject(s)
Histones/metabolism , Acetylation , Animals , Avian Proteins/genetics , Avian Proteins/metabolism , Biological Evolution , Cells, Cultured , Chickens , Euchromatin/metabolism , HeLa Cells , Histones/genetics , Humans , Macaca mulatta , Methylation , Mice , Promoter Regions, Genetic , Protein Isoforms/genetics , Protein Isoforms/metabolism , RNA, Messenger/metabolism , Species Specificity
6.
Biochemistry ; 48(22): 5007-17, 2009 Jun 09.
Article in English | MEDLINE | ID: mdl-19385636

ABSTRACT

Purified histone H2A.Z from chicken erythrocytes and a sodium butyrate-treated chicken erythroleukemic cell line was used as a model system to identify the acetylation sites (K4, K7, K11, K13, and K15) and quantify their distribution in this vertebrate histone variant. To understand the role played by acetylation in the modulation of the H2A.Z nucleosome core particle (NCP) stability and conformation, an extensive analysis was conducted on NCPs reconstituted from acetylated forms of histones, including H2A.Z and recombinant H2A.Z (K/Q) acetylation mimic mutants. Although the overall global acetylation of core histones destabilizes the NCP, we found that H2A.Z stabilizes the NCP regardless of its state of acetylation. Interestingly and quite unexpectedly, we found that the change in NCP conformation induced by global histone acetylation is dependent on H2A/H2A.Z acetylation. This suggests that acetylated H2A variants act synergistically with the acetylated forms of the core histone complement to alter the particle conformation. Furthermore, the simultaneous occurrence of H2A.Z and H2A in heteromorphic NCPs that most likely occurs in vivo slightly destabilizes the NCP, but only in the presence of acetylation.


Subject(s)
Histones/metabolism , Nucleosomes/chemistry , Nucleosomes/metabolism , Acetylation , Amino Acid Sequence , Animals , Cell Line, Transformed , Cell Line, Tumor , Chickens , Chromatin/chemistry , Chromatin/metabolism , Drug Synergism , Erythrocytes/chemistry , Erythrocytes/metabolism , HeLa Cells , Histones/chemistry , Histones/physiology , Humans , Molecular Sequence Data , Nucleic Acid Conformation
7.
BMC Evol Biol ; 9: 31, 2009 Feb 04.
Article in English | MEDLINE | ID: mdl-19193230

ABSTRACT

BACKGROUND: The histone H2A family encompasses the greatest number of core histone variants of which the replacement variant H2A.Z is currently one of the most heavily studied. No clear mechanism for the functional variability that H2A.Z imparts to chromatin has yet been proposed. While most of the past studies have referred to H2A.Z generically as a single protein, in vertebrates it is a mixture of two protein forms H2A.Z-1 (previously H2A.Z) and H2A.Z-2 (previously H2A.F/Z or H2A.V) that differ by three amino acids. RESULTS: We have performed an extensive study on the long-term evolution of H2A.Z across metazoans with special emphasis on the possible selective mechanisms responsible for the differentiation between H2A.Z-1 and H2A.Z-2. Our results reveal a common origin of both forms early in chordate evolution. The evolutionary process responsible for the differentiation involves refined stepwise mutation change within the codons of the three differential residues. This eventually led to differences in the intensity of the selective constraints acting upon the different H2A.Z forms in vertebrates. CONCLUSION: The results presented in this work definitively reveal that the existence of H2A.Z-1 and H2A.Z-2 is not a whim of random genetic drift. Our analyses demonstrate that H2A.Z-2 is not only subject to a strong purifying selection but it is significantly more evolutionarily constrained than H2A.Z-1. Whether or not the evolutionary drift between H2A.Z-1 and H2A.Z-2 has resulted in a functional diversification of these proteins awaits further research. Nevertheless, the present work suggests that in the process of their differently constrained evolutionary pathways, these two forms may have acquired new or complementary functions.


Subject(s)
Chordata/genetics , Evolution, Molecular , Histones/metabolism , Selection, Genetic , Amino Acid Sequence , Animals , Chordata/metabolism , Databases, Genetic , Genetic Drift , Genetic Variation , Histones/genetics , Likelihood Functions , Models, Genetic , Molecular Sequence Data , Mutation , Phylogeny , Sequence Alignment , Species Specificity
8.
Proteomics ; 8(14): 2798-808, 2008 Jul.
Article in English | MEDLINE | ID: mdl-18655049

ABSTRACT

High-efficiency prefractionation of complex protein mixtures is critical for top-down proteomics, i.e., the analysis of intact proteins by MS. Free-flow electrophoresis (FFE) can be used for IEF to separate proteins within a pH gradient according to their pIs. In an FFE system, this separation is performed entirely in the liquid phase, without the need for particulate chromatographic media, gels, or membranes. Herein, we demonstrated the compatibility of IEF-FFE with ESI-Fourier transform ICR MS (ESI-FTICR-MS) for top-down experiments. We demonstrated that IEF-FFE of intact proteins were highly reproducible between FFE instruments, between laboratories, and between analyses. Applying native (0.2% hydroxypropylmethyl cellulose) IEF-FFE to an enzyme resulted in no decrease in enzyme activity; applying either native or denaturing (8 M urea) IEF-FFE to a four-protein mixture with different pIs resulted in isolation of each protein into separate fractions in a 96-well plate. After desalting, each protein was sequenced by top-down MS/MS. As an application of this technique, chicken erythrocyte histone H2A-IV and its major modified forms were enriched by IEF-FFE. Top-down analysis revealed Lys-5 to be a major acetylation site, in addition to N-terminal acetylation.


Subject(s)
Cyclotrons , Fourier Analysis , Isoelectric Focusing/methods , Proteomics/methods , Spectrometry, Mass, Electrospray Ionization , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization , Amino Acid Sequence , Animals , Cattle , Chickens , Horses , Hydrogen-Ion Concentration , Molecular Sequence Data , Proteomics/instrumentation , Spectrometry, Mass, Electrospray Ionization/methods , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization/methods
9.
J Biol Chem ; 281(29): 20036-44, 2006 Jul 21.
Article in English | MEDLINE | ID: mdl-16707487

ABSTRACT

The functional and structural chromatin roles of H2A.Z are still controversial. This work represents a further attempt to resolve the current functional and structural dichotomy by characterizing chromatin structures containing native H2A.Z. We have analyzed the role of this variant in mediating the stability of the histone octamer in solution using gel-filtration chromatography at different pH. It was found that decreasing the pH from neutral to acidic conditions destabilized the histone complex. Furthermore, it was shown that the H2A.Z-H2B dimer had a reduced stability. Sedimentation velocity analysis of nucleosome core particles (NCPs) reconstituted from native H2A.Z-containing octamers indicated that these particles exhibit a very similar behavior to that of native NCPs consisting of canonical H2A. Sucrose gradient fractionation of native NCPs under different ionic strengths indicated that H2A.Z had a subtle tendency to fractionate with more stabilized populations. An extensive analysis of the salt-dependent dissociation of histones from hydroxyapatite-adsorbed chromatin revealed that, whereas H2A.Z co-elutes with H3-H4, hyperacetylation of histones (by treatment of chicken MSB cells with sodium butyrate) resulted in a significant fraction of this variant eluting with the canonical H2A. These studies also showed that the late elution of this variant (correlated to enhanced binding stability) was independent of the chromatin size and of the presence or absence of linker histones.


Subject(s)
Chromatin/metabolism , Histones/metabolism , Acetylation , Animals , Chickens , Circular Dichroism , Dimerization , Erythrocytes/metabolism , Histones/blood , Histones/chemistry , Histones/isolation & purification , Hydrogen-Ion Concentration , Mardivirus/genetics , Nucleosomes/metabolism
10.
Proc Natl Acad Sci U S A ; 102(27): 9463-8, 2005 Jul 05.
Article in English | MEDLINE | ID: mdl-15983376

ABSTRACT

A method for rapid sequencing of intact proteins simultaneously from the N and C termini (1-2 s) with online chromatography is described and applied to the characterization of histone H3.1 posttranslational modifications and the identification of an additional member of the H2A gene family. Proteins are converted to gas-phase multiply charged positive ions by electrospray ionization and then allowed to react with fluoranthene radical anions. Electron transfer to the multiply charged protein promotes random dissociation of the N-Calpha bonds of the protein backbone. Multiply charged fragment ions are then deprotonated in a second ion/ion reaction with the carboxylate anion of benzoic acid. The m/z values for the resulting singly and doubly charged ions are used to read a sequence of 15-40 aa at both the N and C termini of the protein. This information, with the measured mass of the intact protein, is used to search protein or nucleotide databases for possible matches, detect posttranslational modifications, and determine possible splice variants.


Subject(s)
Histones/genetics , Sequence Analysis, Protein/methods , Spectrometry, Mass, Electrospray Ionization/methods , Chromatography, High Pressure Liquid , Databases, Genetic , Fluorenes , Protein Processing, Post-Translational/genetics
11.
Biochem Cell Biol ; 82(4): 490-7, 2004 Aug.
Article in English | MEDLINE | ID: mdl-15284902

ABSTRACT

Integration of histone variants into chromatin organization allows for functional specification of chromatin regions. Recent functional analyses of H2A.Z have ascribed to it a multiplicity of complex and often opposing roles in developmental and homeostatic regulation. However, although the manner in which this essential histone variant is able to mediate its effects is not entirely well understood, current work has sought to investigate its mode of action. It is becoming increasingly clear that H2A.Z does not necessarily act independently, but rather, in conjunction with trans-acting factors to elicit chromatin changes. The nature of these structural changes has remained somewhat controversial but nevertheless exemplifies the seemingly multifaceted nature of H2A.Z.


Subject(s)
Histones/physiology , Saccharomyces cerevisiae Proteins/physiology , Amino Acid Sequence , Animals , Cell Nucleus/metabolism , Chromatin/chemistry , Dimerization , Heterochromatin/chemistry , Histones/chemistry , Humans , Immunoprecipitation , Models, Biological , Models, Molecular , Molecular Sequence Data , Protein Binding , Protein Conformation , Protein Structure, Tertiary , Saccharomyces cerevisiae/physiology , Saccharomyces cerevisiae Proteins/chemistry , Structure-Activity Relationship
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