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SNF2 家族成员 Fun30 促进异染色质位点的基因沉默。

The SNF2-family member Fun30 promotes gene silencing in heterochromatic loci.

机构信息

Chromatin and Gene Expression, Babraham Institute, Cambridge, United Kingdom.

出版信息

PLoS One. 2009 Dec 1;4(12):e8111. doi: 10.1371/journal.pone.0008111.

Abstract

Chromatin regulates many key processes in the nucleus by controlling access to the underlying DNA. SNF2-like factors are ATP-driven enzymes that play key roles in the dynamics of chromatin by remodelling nucleosomes and other nucleoprotein complexes. Even simple eukaryotes such as yeast contain members of several subfamilies of SNF2-like factors. The FUN30/ETL1 subfamily of SNF2 remodellers is conserved from yeasts to humans, but is poorly characterized. We show that the deletion of FUN30 leads to sensitivity to the topoisomerase I poison camptothecin and to severe cell cycle progression defects when the Orc5 subunit is mutated. We demonstrate a role of FUN30 in promoting silencing in the heterochromatin-like mating type locus HMR, telomeres and the rDNA repeats. Chromatin immunoprecipitation experiments demonstrate that Fun30 binds at the boundary element of the silent HMR and within the silent HMR. Mapping of nucleosomes in vivo using micrococcal nuclease demonstrates that deletion of FUN30 leads to changes of the chromatin structure at the boundary element. A point mutation in the ATP-binding site abrogates the silencing function of Fun30 as well as its toxicity upon overexpression, indicating that the ATPase activity is essential for these roles of Fun30. We identify by amino acid sequence analysis a putative CUE motif as a feature of FUN30/ETL1 factors and show that this motif assists Fun30 activity. Our work suggests that Fun30 is directly involved in silencing by regulating the chromatin structure within or around silent loci.

摘要

染色质通过控制对底层 DNA 的访问来调节核内的许多关键过程。SNF2 样因子是 ATP 驱动的酶,通过重塑核小体和其他核蛋白复合物,在染色质动力学中发挥关键作用。即使是简单的真核生物,如酵母,也包含几个 SNF2 样因子亚家族的成员。从酵母到人类,FUN30/ETL1 亚家族的 SNF2 重塑因子是保守的,但特征描述很差。我们表明,FUN30 的缺失导致对拓扑异构酶 I 毒药喜树碱的敏感性,并在 Orc5 亚基突变时导致严重的细胞周期进展缺陷。我们证明了 FUN30 在促进异染色质样交配型位点 HMR、端粒和 rDNA 重复的沉默中的作用。染色质免疫沉淀实验表明,Fun30 结合在沉默 HMR 的边界元件和沉默 HMR 内。使用微球菌核酸酶进行体内核小体作图表明,FUN30 的缺失导致沉默边界元件处染色质结构的变化。ATP 结合位点的点突变消除了 Fun30 的沉默功能以及其过表达时的毒性,表明 ATP 酶活性对于 Fun30 的这些作用是必不可少的。我们通过氨基酸序列分析鉴定出一个推定的 CUE 基序作为 FUN30/ETL1 因子的特征,并表明该基序有助于 Fun30 活性。我们的工作表明,Fun30 通过调节沉默基因座内或周围的染色质结构直接参与沉默。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/593e/2780329/1ee699805990/pone.0008111.g001.jpg

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