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Distinct developmental function of two Caenorhabditis elegans homologs of the cohesin subunit Scc1/Rad21

机译:黏着蛋白亚基Scc1 / Rad21的两个秀丽隐杆线虫同源物的不同发育功能

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Cohesin, which mediates sister chromatid cohesion, is composed of four subunits, named Scc1/Rad21, Scc3, Smc1, and Smc3 in yeast. Caenorhabditis elegans has a single homolog for each of Scc3, Smc1, and Smc3, but as many as four for Scc1/Rad21 (COH-1, SCC-1/COH-2, COH-3, and REC-8). Except for REC-8 required for meiosis, function of these C. elegans proteins remains largely unknown. Herein, we examined their possible involvement in mitosis and development. Embryos depleted of the homolog of either Scc3, or Smc1, or Smc3 by RNA interference revealed a defect in mitotic chromosome segregation but not in chromosome condensation and cytokinesis. Depletion of SCC-1/COH-2 caused similar phenotypes. SCC-1/COH-2 was present in cells destined to divide. It localized to chromosomes in a cell cycle-dependent manner. Worms depleted of COH-1 arrested at either the late embryonic or the larval stage, with no indication of mitotic dysfunction. COH-1 associated chromosomes throughout the cell cycle in all somatic cells undergoing late embryogenesis or larval development. Thus, SCC-1/COH-2 and the homologs of Scc3, Smc1, and Smc3 facilitate mitotic chromosome segregation during the development, presumably by forming a cohesin complex, whereas COH-1 seems to play a role important for development but unrelated to mitosis. [References: 35]
机译:粘着蛋白可介导染色单体的内聚,它由四个亚基组成,分别是酵母中的Scc1 / Rad21,Scc3,Smc1和Smc3。秀丽隐杆线虫对Scc3,Smc1和Smc3都有一个同系物,但对Scc1 / Rad21而言多达四个(COH-1,SCC-1 / COH-2,COH-3和REC-8)。除了减数分裂所需的REC-8外,这些秀丽隐杆线虫蛋白的功能仍然未知。在这里,我们检查了它们可能参与有丝分裂和发育。 RNA干扰使Scc3或Smc1或Smc3的同系物耗尽的胚显示出有丝分裂染色体分离缺陷,但染色体凝结和胞质分裂没有缺陷。 SCC-1 / COH-2的耗竭引起相似的表型。 SCC-1 / COH-2存在于注定要分裂的细胞中。它以细胞周期依赖性方式定位于染色体。耗尽COH-1的蠕虫在胚胎晚期或幼虫期停滞,没有迹象表明有丝分裂功能异常。在经历后期胚胎发生或幼虫发育的所有体细胞中,COH-1相关染色体贯穿整个细胞周期。因此,SCC-1 / COH-2和Scc3,Smc1和Smc3的同源物在发育过程中促进有丝分裂染色体分离,大概是通过形成粘着蛋白复合物来实现的,而COH-1似乎在发育中起重要作用,但与有丝分裂无关。 [参考:35]

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