首页> 美国卫生研究院文献>Nucleic Acids Research >A mutation in NPS1/STH1 an essential gene encoding a component of a novel chromatin-remodeling complex RSC alters the chromatin structure of Saccharomyces cerevisiae centromeres.
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A mutation in NPS1/STH1 an essential gene encoding a component of a novel chromatin-remodeling complex RSC alters the chromatin structure of Saccharomyces cerevisiae centromeres.

机译:NPS1 / STH1(一种编码新型染色质重塑复合体RSC的组成部分的必需基因)中的突变可改变酿酒酵母着丝粒的染色质结构。

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摘要

The NPS1/STH1 gene encodes a nuclear protein essential for the progression of G2/M phase in Saccharomyces cerevisiae . Nps1p shares homology to Snf2/Swi2p, a subunit of a protein complex known as the SNF/SWI complex. Recently, Nps1p was found to be a component of a protein complex termed RSC (3) essential for mitotic growth, whereas its function is unknown. We isolated a temperature-sensitive mutant allele of NPS1 , nps1-105, and found that the mutation increases the sensitivity to thiabendazole (TBZ). At the restrictive temperature, nps1-105 arrested at the G2/M phase in MAD1-dependent manner and missegregated the mini-chromosome with higher frequency than the wild type cells. The nuclease digestion of the chromatin of the mutant cells revealed that the mutation causes the alteration of the chromatin structure around centromeres at the restrictive temperature. The results suggested that, in the nps1-105 mutant, impaired chromatin structure surrounding centromeres may lead to an impairment of kinetochore function and the cells arrest at G2/M phase through the spindle-assembly checkpoint system.
机译:NPS1 / STH1基因编码了酿酒酵母G2 / M期发育所必需的核蛋白。 Nps1p与Snf2 / Swi2p(一种称为SNF / SWI复合物的蛋白质复合物的亚基)具有同源性。最近,发现Nps1p是蛋白质复合物的组成部分,该蛋白质复合物被称为有丝分裂生长所必需的RSC(3),而其功能尚不清楚。我们分离了NPS1,nps1-105的温度敏感突变等位基因,发现该突变增加了对噻苯达唑(TBZ)的敏感性。在限制性温度下,nps1-105以MAD1依赖的方式停滞在G2 / M期,并以比野生型细胞更高的频率错集微型染色体。突变细胞染色质的核酸酶消化表明,该突变导致限制温度下着丝粒周围染色质结构的改变。结果表明,在nps1-105突变体中,着丝粒周围的染色质结构受损可能导致动线粒体功能受损,并且细胞通过纺锤体装配检查点系统停留在G2 / M期。

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