首页> 外文期刊>Current Biology: CB >Yeast histone deposition protein Asf1p requires Hir proteins and PCNA for heterochromatic silencing
【24h】

Yeast histone deposition protein Asf1p requires Hir proteins and PCNA for heterochromatic silencing

机译:酵母组蛋白沉积蛋白Asf1p需要Hir蛋白和PCNA进行异色沉默

获取原文
获取原文并翻译 | 示例
       

摘要

Background: Position-dependent gene silencing in yeast involves many factors, including the four HIR genes and nucleosome assembly proteins Asf1p and chromatin assembly factor I (CAF-I, encoded by the CAC1-3 genes), Both cac Delta asf1 Delta and cac Delta hir Delta double mutants display synergistic reductions in heterochromatic gene silencing, However, the relationship between the contributions of HIR genes and ASF1 to silencing has not previously been explored. Results: Our biochemical and genetic studies of yeast Asf1p revealed links to Hir protein function, In vitro, an active histone deposition complex was formed from recombinant yeast Asf1p and histones H3 and H4 that lack a newly synthesized acetylation pattern. This Asf1p/H3/H4 complex generated micrococcal nuclease-resistant DNA in the absence of DNA replication and stimulated nucleosome assembly activity by recombinant yeast CAF-I during DNA synthesis. Also, Asf1p bound to the Hir1p and Hir2p proteins in vitro and in cell extracts, In vivo, the HIR1 and ASF1 genes contributed to silencing the heterochromatic HML locus via the same genetic pathway. Deletion of either HIR1 or ASF1 eliminated telomeric gene silencing in combination with pol30-8, encoding an altered form of the DNA polymerase processivity factor PCNA that prevents OAF-I from contributing to silencing, Conversely, other pol30 alleles prevented Asf1/Hir proteins from contributing to silencing. Conclusions: Yeast CAP-I and Asf1p cooperate to form nucleosomes in vitro. In vivo, Asf1p and Hir proteins physically interact and together promote heterochromatic gene silencing in a manner requiring PCNA. This Asf1/Hir silencing pathway functionally overlaps with CAP-I activity. [References: 56]
机译:背景:酵母中位置依赖性基因沉默涉及许多因素,包括四个HIR基因和核小体装配蛋白Asf1p和染色质装配因子I(CAF-1,由CAC1-3基因编码),cac Delta asf1 Delta和cac Delta hir Delta双突变体在异色基因沉默中显示协同降低,但是,以前尚未探讨过HIR基因和ASF1对沉默的贡献之间的关系。结果:我们对酵母Asf1p的生化和遗传研究揭示了与Hir蛋白功能的联系,在体外,重组酵母Asf1p和缺乏新合成的乙酰化模式的组蛋白H3和H4形成了活性组蛋白沉积复合物。在没有DNA复制的情况下,这种Asf1p / H3 / H4复合物生成了抗微球菌核酸酶的DNA,并在DNA合成过程中通过重组酵母CAF-1刺激了核小体的组装活性。同样,Asp1p在体外和细胞提取物中与Hir1p和Hir2p蛋白结合,在体内,HIR1和ASF1基因通过相同的遗传途径有助于沉默异色HML基因座。 HIR1或ASF1的缺失可消除与pol30-8结合的端粒基因沉默,而pol30-8编码可改变形式的DNA聚合酶持续性因子PCNA,可阻止OAF-1沉默,相反,其他pol30等位基因可阻止Asf1 / Hir蛋白发挥作用沉默。结论:酵母CAP-1和Asf1p在体外协同形成核小体。在体内,Asp1p和Hir蛋白以需要PCNA的方式物理相互作用并共同促进异色基因沉默。该Asf1 / Hir沉默途径在功能上与CAP-1活性重叠。 [参考:56]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号