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The Condensin Complex Governs Chromosome Condensation and Mitotic Transmission of Rdna

机译:凝聚素复合体控制Rdna的染色体浓缩和有丝分裂传递

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摘要

We have characterized five genes encoding condensin components in Saccharomyces cerevisiae. All genes are essential for cell viability and encode proteins that form a complex in vivo. We characterized new mutant alleles of the genes encoding the core subunits of this complex, smc2-8 and smc4-1. Both SMC2 and SMC4 are essential for chromosome transmission in anaphase. Mutations in these genes cause defects in establishing condensation of unique (chromosome VIII arm) and repetitive (rDNA) regions of the genome but do not impair sister chromatid cohesion. In vivo localization of Smc4p fused to green fluorescent protein showed that, unexpectedly, in S. cerevisiae the condensin complex concentrates in the rDNA region at the G2/M phase of the cell cycle. rDNA segregation in mitosis is delayed and/or stalled in smc2 and smc4 mutants, compared with separation of pericentromeric and distal arm regions. Mitotic transmission of chromosome III carrying the rDNA translocation is impaired in smc2 and smc4 mutants. Thus, the condensin complex in S. cerevisiae has a specialized function in mitotic segregation of the rDNA locus. Chromatin immunoprecipitation (ChIP) analysis revealed that condensin is physically associated with rDNA in vivo. Thus, the rDNA array is the first identified set of DNA sequences specifically bound by condensin in vivo. The biological role of higher-order chromosome structure in S. cerevisiae is discussed.
机译:我们已经表征了五个在酿酒酵母中编码凝缩蛋白成分的基因。所有基因对于细胞活力都是必不可少的,并编码在体内形成复合物的蛋白质。我们表征了编码该复合物smc2-8和smc4-1的核心亚基的基因的新突变等位基因。 SMC2和SMC4都是后期染色体传输所必需的。这些基因中的突变在建立基因组独特(染色体VIII臂)和重复(rDNA)区域的缩合中引起缺陷,但不会损害姐妹染色单体的内聚力。融合了绿色荧光蛋白的Smc4p的体内定位表明,出乎意料的是,在酿酒酵母中,凝缩蛋白复合物集中在细胞周期G2 / M期的rDNA区域。相比于着丝粒和远端臂区域的分离,smc2和smc4突变体中有丝分裂中的rDNA分离被延迟和/或停止。携带rDNA易位的III号染色体的有丝分裂传递在smc2和smc4突变体中受损。因此,酿酒酵母中的凝聚素复合体在rDNA基因座的有丝分裂分离中具有特殊的功能。染色质免疫沉淀(ChIP)分析表明,凝集素在体内与rDNA物理相关。因此,rDNA阵列是体内凝缩蛋白特异性结合的第一个鉴定的DNA序列集。讨论了酿酒酵母中高阶染色体结构的生物学作用。

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