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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The RSC Chromatin Remodeling Complex Bears an Essential Fungal-Specific Protein Module With Broad Functional Roles
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The RSC Chromatin Remodeling Complex Bears an Essential Fungal-Specific Protein Module With Broad Functional Roles

机译:RSC染色质重塑复合物具有功能广泛的重要真菌特异性蛋白模块

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摘要

RSC is an essential and abundant ATP-dependent chromatin remodeling complex from Saccharomyces cerevisiae . Here we show that the RSC components Rsc7/Npl6 and Rsc14/Ldb7 interact physically and/or functionally with Rsc3, Rsc30, and Htl1 to form a module important for a broad range of RSC functions. A strain lacking Rsc7 fails to properly assemble RSC, which confers sensitivity to temperature and to agents that cause DNA damage, microtubule depolymerization, or cell wall stress (likely via transcriptional misregulation). Cells lacking Rsc14 display sensitivity to cell wall stress and are deficient in the assembly of Rsc3 and Rsc30. Interestingly, certain rsc7 Δ and rsc14 Δ phenotypes are suppressed by an increased dosage of Rsc3, an essential RSC member with roles in cell wall integrity and spindle checkpoint pathways. Thus, Rsc7 and Rsc14 have different roles in the module as well as sharing physical and functional connections to Rsc3. Using a genetic array of nonessential null mutations (SGA) we identified mutations that are sick/lethal in combination with the rsc7 Δ mutation, which revealed connections to a surprisingly large number of chromatin remodeling complexes and cellular processes. Taken together, we define a protein module on the RSC complex with links to a broad spectrum of cellular functions.
机译:RSC是酿酒酵母(Saccharomyces cerevisiae)必需且丰富的ATP依赖染色质重塑复合物。在这里,我们显示RSC组件Rsc7 / Npl6和Rsc14 / Ldb7与Rsc3,Rsc30和Htl1在物理和/或功能上相互作用,形成了对广泛的RSC功能重要的模块。缺少Rsc7的菌株无法正确装配RSC,从而赋予了对温度和导致DNA损伤,微管解聚或细胞壁应力(可能是由于转录失调)的作用的敏感性。缺少Rsc14的细胞显示出对细胞壁应力的敏感性,并且在Rsc3和Rsc30的组装中不足。有趣的是,某些rsc7Δ和rsc14Δ表型受到Rsc3剂量增加的抑制,Rsc3是在细胞壁完整性和纺锤体检查点途径中起作用的重要RSC成员。因此,Rsc7和Rsc14在模块中具有不同的角色,并且共享与Rsc3的物理和功能连接。使用非必需无效突变(SGA)的遗传阵列,我们确定了与rsc7Δ突变结合的致病/致命突变,揭示了与大量染色质重塑复合物和细胞过程的联系。综上所述,我们在RSC复合体上定义了一个蛋白质模块,该模块与多种细胞功能相关。

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