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SIR2是多梳蛋白沉默所必需的,并且与一种E(Z)组蛋白甲基转移酶复合物相关。

SIR2 is required for polycomb silencing and is associated with an E(Z) histone methyltransferase complex.

作者信息

Furuyama Takehito, Banerjee Rakhee, Breen Thomas R, Harte Peter J

机构信息

Department of Genetics, School of Medicine, Case Western Reserve University, Cleveland, OH 44106, USA.

出版信息

Curr Biol. 2004 Oct 26;14(20):1812-21. doi: 10.1016/j.cub.2004.09.060.

Abstract

BACKGROUND

SIR2 was originally identified in S. cerevisiae for its role in epigenetic silencing through the creation of specialized chromatin domains. It is the most evolutionarily conserved protein deacetylase, with homologs in all kingdoms. SIR2 orthologs in multicellular eukaryotes have been implicated in lifespan determination and regulation of the activities of transcription factors and other proteins. Although SIR2 has not been widely implicated in epigenetic silencing outside yeast, Drosophila SIR2 mutations were recently shown to perturb position effect variegation, suggesting that the role of SIR2 in epigenetic silencing may not be restricted to yeast.

RESULTS

Evidence is presented that Drosophila SIR2 is also involved in epigenetic silencing by the Polycomb group proteins. Sir2 mutations enhance the phenotypes of Polycomb group mutants and disrupt silencing of a mini-white reporter transgene mediated by a Polycomb response element. Consistent with this, SIR2 is physically associated with components of an E(Z) histone methyltransferase complex. SIR2 binds to many euchromatic sites on polytene chromosomes and colocalizes with E(Z) at most sites.

CONCLUSIONS

SIR2 is involved in the epigenetic inheritance of silent chromatin states mediated by the Drosophila Polycomb group proteins and is physically associated with a complex containing the E(Z) histone methyltransferase.

摘要

背景

SIR2最初是在酿酒酵母中被鉴定出来的,因其通过创建特殊的染色质结构域在表观遗传沉默中发挥作用。它是进化上最保守的蛋白质脱乙酰酶,在所有生物界中都有同源物。多细胞真核生物中的SIR2直系同源物与寿命决定以及转录因子和其他蛋白质的活性调节有关。尽管SIR2在酵母之外的表观遗传沉默中尚未被广泛涉及,但最近的研究表明,果蝇SIR2突变会扰乱位置效应斑驳,这表明SIR2在表观遗传沉默中的作用可能并不局限于酵母。

结果

有证据表明果蝇SIR2也参与了多梳蛋白组介导的表观遗传沉默。Sir2突变增强了多梳蛋白组突变体的表型,并破坏了由多梳反应元件介导的微型白色报告转基因的沉默。与此一致的是,SIR2与E(Z)组蛋白甲基转移酶复合物的组分在物理上相关联。SIR2与多线染色体上的许多常染色质位点结合,并在大多数位点与E(Z)共定位。

结论

SIR2参与了果蝇多梳蛋白组介导的沉默染色质状态的表观遗传遗传,并与含有E(Z)组蛋白甲基转移酶的复合物在物理上相关联。

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