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C. elegans condensin promotes mitotic chromosome architecture centromere organization and sister chromatid segregation during mitosis and meiosis

机译:秀丽隐杆线虫凝集素在有丝分裂和减数分裂过程中促进有丝分裂染色体结构着丝粒组织和姐妹染色单体分离

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摘要

Chromosome segregation and X-chromosome gene regulation in Caenorhabditis elegans share the component MIX-1, a mitotic protein that also represses X-linked genes during dosage compensation. MIX-1 achieves its dual roles through interactions with different protein partners. To repress gene expression, MIX-1 acts in an X-chromosome complex that resembles the mitotic condensin complex yet lacks chromosome segregation function. Here we show that MIX-1 interacts with a mitotic condensin subunit, SMC-4, to achieve chromosome segregation. The SMC-4/MIX-1 complex positively supercoils DNA in vitro and is required for mitotic chromosome structure and segregation in vivo. Thus, C. elegans has two condensin complexes, one conserved for mitosis and another specialized for gene regulation. SMC-4 and MIX-1 colocalize with centromere proteins on condensed mitotic chromosomes and are required for the restricted orientation of centromeres toward spindle poles. This cell cycle-dependent localization requires AIR-2/AuroraB kinase. Depletion of SMC-4/MIX-1 causes aberrant mitotic chromosome structure and segregation, but not dramatic decondensation at metaphase. Moreover, SMC-4/MIX-1 depletion disrupts sister chromatid segregation during meiosis II but not homologous chromosome segregation during meiosis I, although both processes require chromosome condensation. These results imply that condensin is not simply required for compaction, but plays a more complex role in chromosome architecture that is essential for mitotic and meiotic sister chromatid segregation.
机译:秀丽隐杆线虫的染色体分离和X染色体基因调控共有MIX-1成分,一种有丝分裂蛋白,在剂量补偿过程中也抑制X连锁基因。 MIX-1通过与不同蛋白质伴侣的相互作用来实现其双重作用。为了抑制基因表达,MIX-1在类似于有丝分裂凝缩蛋白复合物的X染色体复合物中起作用,但缺乏染色体分离功能。在这里,我们显示MIX-1与有丝分裂凝缩素亚基SMC-4相互作用,以实现染色体分离。 SMC-4 / MIX-1复合物在体外能使DNA呈超螺旋状态,是体内有丝分裂染色体结构和分离所必需的。因此,秀丽隐杆线虫具有两种凝聚素复合物,一种保守有丝分裂,另一种专门用于基因调控。 SMC-4和MIX-1与浓缩的有丝分裂染色体上的着丝粒蛋白共定位,对于着丝粒向纺锤极的定向限制是必需的。这种依赖细胞周期的定位需要AIR-2 / AuroraB激酶。 SMC-4 / MIX-1的耗尽会导致有丝分裂染色体结构异常和分离,但在中期不会引起剧烈的缩合。此外,SMC-4 / MIX-1耗竭破坏了减数分裂II期间姐妹染色单体的分离,但不破坏减数分裂I期间同源染色体的分离,尽管这两个过程都需要染色体浓缩。这些结果表明,凝缩蛋白不仅是紧实所需的,而且在染色体结构中起着更为复杂的作用,这对于有丝分裂和减数分裂姐妹染色单体的分离至关重要。

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