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H3.1K27me1 maintains transcriptional silencing and genome stability by preventing GCN5-mediated histone acetylation

机译:H3.1K27ME1通过防止GCN5介导的组蛋白乙酰化保持转录沉默和基因组稳定性

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摘要

Epigenetic mechanisms play diverse roles in the regulation of genome stability in eukaryotes. In Arabidopsis thaliana, genome stability is maintained during DNA replication by the H3.1K27 methyltransferases ARABIDOPSIS TRITHORAX-RELATED PROTEIN 5 (ATXR5) and ATXR6, which catalyze the deposition of K27me1 on replication-dependent H3.1 variants. The loss of H3.1K27me1 in atxr5 atxr6 double mutants leads to heterochromatin defects, including transcriptional de-repression and genomic instability, but the molecular mechanisms involved remain largely unknown. In this study, we identified the transcriptional co-activator and conserved histone acetyltransferase GCN5 as a mediator of transcriptional de-repression and genomic instability in the absence of H3.1K27me1. GCN5 is part of a SAGA-like complex in plants that requires the GCN5-interacting protein ADA2b and the chromatin remodeler CHR6 to mediate the heterochromatic defects in atxr5 atxr6 mutants. Our results also indicate that Arabidopsis GCN5 acetylates multiple lysine residues on H3.1 variants, but H3.1K27 and H3.1K36 play essential functions in inducing genomic instability in the absence of H3.1K27me1. Finally, we show that H3.1K36 acetylation by GCN5 is negatively regulated by H3.1K27me1 in vitro. Overall, this work reveals a key molecular role for H3.1K27me1 in maintaining transcriptional silencing and genome stability in heterochromatin by restricting GCN5-mediated histone acetylation in plants.
机译:表观遗传学机制在真核生物基因组稳定性的调控中发挥着不同的作用。在拟南芥中,H3在DNA复制过程中维持基因组的稳定性。1K27甲基转移酶拟南芥三胸相关蛋白5(ATXR5)和ATXR6,它们催化K27me1在复制依赖性H3上的沉积。1.变种。H3的缺失。atxr5 atxr6双突变体中的1K27me1导致异染色质缺陷,包括转录去抑制和基因组不稳定性,但相关的分子机制仍不清楚。在这项研究中,我们确定了转录共激活剂和保守的组蛋白乙酰转移酶GCN5在缺乏H3的情况下作为转录去抑制和基因组不稳定性的介质。1K27me1。GCN5是植物中SAGA样复合体的一部分,该复合体需要GCN5相互作用蛋白ADA2b和染色质重塑剂CHR6来介导atxr5 atxr6突变体中的异染色质缺陷。我们的结果还表明,拟南芥GCN5乙酰化H3上的多个赖氨酸残基。1变种,但H3。1K27和H3。1K36在缺乏H3的情况下,在诱导基因组不稳定性方面发挥重要作用。1K27me1。最后,我们展示了H3。GCN5的1K36乙酰化受到H3的负调节。1K27me1体外培养。总的来说,这项工作揭示了H3的关键分子作用。1K27me1通过限制植物中GCN5介导的组蛋白乙酰化来维持异染色质中的转录沉默和基因组稳定性。

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  • 来源
    《The Plant Cell》 |2021年第4期|共19页
  • 作者单位

    Yale Univ Fac Arts &

    Sci Dept Mol Cellular &

    Dev Biol 260 Whitney Ave New Haven CT 06511 USA;

    Yale Univ Fac Arts &

    Sci Dept Mol Cellular &

    Dev Biol 260 Whitney Ave New Haven CT 06511 USA;

    Yale Univ Fac Arts &

    Sci Dept Mol Cellular &

    Dev Biol 260 Whitney Ave New Haven CT 06511 USA;

    Yale Univ Fac Arts &

    Sci Dept Mol Cellular &

    Dev Biol 260 Whitney Ave New Haven CT 06511 USA;

    Yale Univ Fac Arts &

    Sci Dept Mol Cellular &

    Dev Biol 260 Whitney Ave New Haven CT 06511 USA;

    Univ Edinburgh Wellcome Ctr Cell Biol Sch Biol Sci Edinburgh EH9 3BF Midlothian Scotland;

    Yale Univ Fac Arts &

    Sci Dept Mol Cellular &

    Dev Biol 260 Whitney Ave New Haven CT 06511 USA;

    Yale Univ Fac Arts &

    Sci Dept Mol Cellular &

    Dev Biol 260 Whitney Ave New Haven CT 06511 USA;

    Univ Edinburgh Wellcome Ctr Cell Biol Sch Biol Sci Edinburgh EH9 3BF Midlothian Scotland;

    Yale Univ Fac Arts &

    Sci Dept Mol Cellular &

    Dev Biol 260 Whitney Ave New Haven CT 06511 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物细胞学;
  • 关键词

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