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首页> 外文期刊>Molecular biology reports >Genetic analysis of RSC58, which encodes a component of a yeast chromatin remodeling complex, and interacts with the transcription factor Swi6
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Genetic analysis of RSC58, which encodes a component of a yeast chromatin remodeling complex, and interacts with the transcription factor Swi6

机译:RSC58的遗传分析,其编码酵母染色质重塑复合物的成分,并与转录因子Swi6相互作用

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Before transcription can begin, the chromatin structure must be rearranged at the nucleosome level. In yeast the nucleosome remodeling complex RSC is involved in this process and it is essential for growth. Recent analysis of the RSC by mass spectrometry has suggested that the product of YLR033w, an essential gene of unknown function, is a novel component of the complex, and the gene has been renamed RSC58. Rsc58 is predicted to be 502 amino acids long. We have isolated five temperature-sensitive mutations in RSC58 and studied the cellular function of the gene. Our major findings are the following. (1) Two of the alleles have a frameshift mutation near the 3' end of the gene, in codons 482 and 485, respectively. The first mutation is associated with the more severe phenotype. This is compatible with the finding that removal of the C-terminal 25 residues of Rsc58 is lethal to cells. These results suggest that C-terminal region is essential for Rsc58 function. (2) RSC4, which codes for another member of the RSC, was found to be a multicopy suppressor of the phenotype of one of the temperature-sensitive mutants. (3) Two-hybrid analysis identified Swi6, a transcription factor, as a candidate interactor with Rsc58. An interaction between Rsc58 and Swi6 is also suggested by the fact that rsc58-ts Deltaswi6 double mutants show a more severe growth defect than either mutation alone. These results suggest the possibility that Rsc58 mediates between nucleosome remodeling and the initiation of transcription.
机译:在开始转录之前,必须在核小体水平上重新排列染色质结构。在酵母中,核小体重塑复合物RSC参与此过程,并且对于生长至关重要。最近通过质谱分析RSC的结果表明,功能未知的必需基因YLR033w的产物是该复合物的新成分,该基因已重命名为RSC58。 Rsc58预计长度为502个氨基酸。我们在RSC58中分离了五个温度敏感突变,并研究了该基因的细胞功能。我们的主要发现如下。 (1)两个等位基因在基因的3'端附近具有移码突变,分别位于482和485密码子中。第一个突变与更严重的表型有关。这与发现Rsc58的C末端25个残基的去除对细胞是致命的发现是相容的。这些结果表明,C末端区域对于Rsc58功能是必不可少的。 (2)发现编码RSC另一成员的RSC4是温度敏感突变体之一的表型的多拷贝抑制剂。 (3)两次杂交分析确定转录因子Swi6为与Rsc58的候选相互作用子。 rsc58-ts Deltaswi6双重突变体比单独的任一突变体都显示出更严重的生长缺陷,这也暗示了Rsc58和Swi6之间的相互作用。这些结果表明Rsc58在核小体重塑和转录起始之间介导的可能性。

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