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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Resolution of human ribosomal DNA occurs in anaphase, dependent on tankyrase 1, condensin II, and topoisomerase II alpha
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Resolution of human ribosomal DNA occurs in anaphase, dependent on tankyrase 1, condensin II, and topoisomerase II alpha

机译:人核糖体DNA的分辨率发生在不依赖于水肌苷1,凝结素II和拓扑异构酶IIα

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摘要

Formation of individualized sister chromatids is essential for their accurate segregation. In budding yeast, while most of the genome segregates at the metaphase to anaphase transition, resolution of the ribosomal DNA (rDNA) repeats is delayed. The timing and mechanism in human cells is unknown. Here we show that resolution of human rDNA occurs in anaphase after the bulk of the genome, dependent on tankyrase 1, condensin II, and topoisomerase II alpha. Defective resolution leads to rDNA bridges, rDNA damage, and aneuploidy of an rDNA-containing acrocentric chromosome. Thus, temporal regulation of rDNA segregation is conserved between yeast and man and is essential for genome integrity.
机译:个性化筛子染色体的形成对于它们的准确偏析至关重要。 在萌芽酵母中,而大多数基因组分离在中期的中期转变时,核糖体DNA(RDNA)重复的分辨率延迟。 人体细胞中的时序和机制是未知的。 在这里,我们表明人RDNA的分辨率在大部分基因组后发生在基因组之后,取决于不含水肌酶1,夹蛋白II和拓扑异构酶IIα。 缺陷的分辨率导致rDNA桥梁,rDNA损伤和含RDNA的上注染色体的非整倍性。 因此,酵母和人类之间的rDNA偏析的时间调节是保守的,对于基因组完整性至关重要。

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