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PMID: 12902198 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Analysis of specific lysine histone H3 and H4 acetylation and methylation status in clones of cells with a gene silenced by nickel exposure.

Toxicology and applied pharmacology ·Vol. 190 ·No. 3 ·2003-08-01 ·Pages 272-7

Yan Y, Kluz T, Zhang P, Chen HB, Costa M

Abstract

We have previously reported that the gpt transgene in G12 Chinese hamster cells could be silenced by water-insoluble nickel compounds nickel sulfide (NiS) or nickel subsulfide (Ni(3)S(2)) and showed that the transgene was silenced by de novo DNA methylation and chromatin condensation. To further understand the nature of this silencing, we used the chromatin immunoprecipitation assay to elucidate the chromatin structure in nickel-induced silenced G12 clones. We also analyzed the effects of the DNA methyltransferase inhibitor 5-azacytidine (5-AzaC) and a histone deacetylase inhibitor trichostatin A (TSA) on histone H3 and H4 acetylation and gpt gene expression in selected nickel-silenced clones. We observed that both histone H3 and H4 were hypoacetylated and a methyl DNA-binding protein MeCP2 was targeted to the gpt gene locus, resulting in a localized inactive chromatin configuration in nickel-silenced cell clones. The histone H3K9 was also found methylated in three of four nickel- silenced cell clones, whereas the histone H3K9 was deacetylated in all four cell clones, indicating that the H3K9 methylation was involved in nickel-induced gene silencing. The acetylation of the gpt gene could be increased by a combination of 5-AzaC and TSA treatment, but not by either 5-AzaC or TSA alone. The gpt transcript was studied by either Northern blot or by semiquantitative RT-PCR following treatment of the silenced clones with TSA or 5-AzaC. An increase in gpt mRNA could be detected by RT-PCR in the clones that regained acetylation of H3 and H4. These data show that gene silencing induced by nickel in the gpt transgenic cell line involved a loss of histone acetylation and an activation of histone methylation. Both H4 and H3 histone acetylation were lost in the silenced clones and these clones exhibited an increase in the methylation of the lysine 9 in histone H3.

MeSH Terms
Acetylation Animals Azacitidine/pharmacology Bacterial Proteins/genetics,metabolism Carcinogens/toxicity Chromatin/drug effects Clone Cells Cricetinae Cricetulus DNA Methylation/drug effects Drug Combinations Escherichia coli Proteins Gene Expression Gene Silencing/drug effects Histones/drug effects,metabolism Hydroxamic Acids/pharmacology Lysine/metabolism Nickel/toxicity Pentosyltransferases Precipitin Tests/methods Proteins RNA, Messenger/metabolism Transgenes
Chemicals
Bacterial Proteins Carcinogens Chromatin Drug Combinations Escherichia coli Proteins Histones Hydroxamic Acids Proteins RNA, Messenger trichostatin A Nickel Pentosyltransferases Gpt protein, E coli Lysine Azacitidine
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Yan Yan
Department of Environmental Medicine and The NYU Cancer Institute, New York University School of Medicine, Tuxedo 10987, USA.
Kluz Thomas
Zhang Ping
Chen Hao-bin
Costa Max
Article Info
Journal
Toxicology and applied pharmacology
Abbr.
Toxicol Appl Pharmacol
ISSN
0041-008X
Published
2003-08-01
Pages
272-7
Language
English
Region
United States
NLM ID
0416575
Subset
IM
Grants
NCI NIH HHS · CA16087 · United States
NIEHS NIH HHS · ES00260 · United States
NIEHS NIH HHS · ES05512 · United States
NIEHS NIH HHS · ES10344 · United States
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