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首页> 外文期刊>Molecular cell >A Rsc3/Rsc30 zinc cluster dimer reveals novel roles for the chromatin remodeler RSC in gene expression and cell cycle control.
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A Rsc3/Rsc30 zinc cluster dimer reveals novel roles for the chromatin remodeler RSC in gene expression and cell cycle control.

机译:Rsc3 / Rsc30锌簇二聚体揭示了染色质重塑剂RSC在基因表达和细胞周期控制中的新作用。

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摘要

Chromatin remodeling complexes perform central roles in transcriptional regulation. Here, we identify Rsc3 and Rsc30 as novel components of the essential yeast remodeler RSC complex. Rsc3 and Rsc30 function requires their zinc cluster domain, a known site-specific DNA binding motif. RSC3 is essential, and rsc3 Ts- mutants display a G2/M cell cycle arrest involving the spindle assembly checkpoint pathway, whereas rsc30Delta mutants are viable and osmosensitive. Rsc3 and Rsc30 interact functionally and also physically as a stable Rsc3/Rsc30 heteromeric complex. However, DNA microarray analysis with rsc3 or rsc30 mutants reveals different effects on the expression levels of ribosomal protein genes and cell wall genes. We propose that Rsc3 and Rsc30 interact physically but have different roles in targeting or regulating RSC.
机译:染色质重塑复合体在转录调控中发挥核心作用。在这里,我们确定Rsc3和Rsc30为必需酵母重塑剂RSC复合物的新型成分。 Rsc3和Rsc30功能需要它们的锌簇结构域,这是已知的位点特异性DNA结合基序。 RSC3是必不可少的,而rsc3 Ts-突变体表现出涉及纺锤体装配检查点途径的G2 / M细胞周期停滞,而rsc30Delta突变体则具有生存力和渗透敏感性。 Rsc3和Rsc30在功能上和物理上都作为稳定的Rsc3 / Rsc30异聚复合物相互作用。但是,用rsc3或rsc30突变体进行的DNA微阵列分析揭示了对核糖体蛋白基因和细胞壁基因表达水平的不同影响。我们建议Rsc3和Rsc30在物理上相互作用,但在靶向或调节RSC中具有不同的作用。

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