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首页> 外文期刊>Nucleic Acids Research >Roles for Gcn5p and Ada2p in transcription and nucleotide excision repair at the Saccharomyces cerevisiae MET16 gene.
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Roles for Gcn5p and Ada2p in transcription and nucleotide excision repair at the Saccharomyces cerevisiae MET16 gene.

机译:Gcn5p和Ada2p在酿酒酵母MET16基因的转录和核苷酸切除修复中的作用。

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摘要

Chromatin structure, transcription and repair of cyclobutane pyrimidine dimers at the MET16 gene of wild type, gcn5Delta and ada2Delta Saccharomyces cerevisiae cells were studied under repressing or derepressing conditions. These two components of the SAGA/ADA chromatin remodelling complexes are expendable for the basal transcription of MET16 but are mandatory for its full transcription induction. Despite their influence on transcription neither protein induces major changes in MET16 chromatin structure, but some minor ones occur. Repair at the coding region of the transcribed strand is faster than repair at non-transcribed regions in all strains and either growth condition. Moreover, the more MET16 is transcribed the faster the repair. The data show that by changing the transcription extent the rate of repair at each DNA strand is altered in a different way, confirming that repair at this locus is strongly modulated by its chromatin structure and transcription level. Deletion of GCN5 or ADA2 reduces repair at MET16. The results are discussed in light of the current understanding of Gcn5p and Ada2p functions, and they are the first to report a role for Ada2p in the nucleotide excision repair of the regulatory and transcribed regions of a gene.
机译:在抑制或抑制条件下,研究了野生型gcn5Delta和ada2Delta酿酒酵母细胞的MET16基因的染色质结构,环丁烷嘧啶二聚体的转录和修复。 SAGA / ADA染色质重塑复合物的这两个组件对于MET16的基础转录是消耗性的,但对于其完全转录诱导是必需的。尽管它们对转录有影响,但两种蛋白质都不会诱导MET16染色质结构发生重大变化,但会发生一些次要变化。在所有菌株和任一生长条件下,在转录链的编码区的修复比在非转录区的修复快。此外,转录的MET16越多,修复速度就越快。数据表明,通过改变转录程度,每条DNA链的修复率都以不同的方式改变,从而证实该位点的修复受到染色质结构和转录水平的强烈调节。删除GCN5或ADA2会减少MET16的维修。根据目前对Gcn5p和Ada2p功能的理解对结果进行了讨论,并且它们是第一个报告Ada2p在基因的调控区和转录区的核苷酸切除修复中的作用的研究。

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