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Functional characterization of kinetochore protein, Ctf19 in meiosis I: an implication of differential impact of Ctf19 on the assembly of mitotic and meiotic kinetochores in Saccharomyces cerevisiae

机译:线粒体蛋白Ctf19在减数分裂中的功能表征I:Ctf19对酿酒酵母有丝分裂和减数分裂动植物组装的不同影响

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摘要

Meiosis is a specialized cell division process through which chromosome numbers are reduced by half for the generation of gametes. Kinetochore, a multiprotein complex that connects centromeres to microtubules, plays essential role in chromosome segregation. Ctf19 is the key central kinetochore protein that recruits all the other non-essential proteins of the Ctf19 complex in budding yeast. Earlier studies have shown the role of Ctf19 complex in enrichment of cohesin around the centromeres both during mitosis and meiosis, leading to sister chromatid cohesion and meiosis II disjunction. Here we show that Ctf19 is also essential for the proper execution of the meiosis I specific unique events, such as non-homologous centromere coupling, homologue pairing, chiasmata resolution and proper orientation of homologues and sister chromatids with respect to the spindle poles. Additionally, this investigation reveals that proper kinetochore function is required for faithful chromosome condensation in meiosis. Finally, this study suggests that absence of Ctf19 affects the integrity of meiotic kinetochore differently than that of the mitotic kinetochore. Consequently, absence of Ctf19 leads to gross chromosome missegregation during meiosis as compared with mitosis. Hence, this study reports for the first time the differential impact of a non-essential kinetochore protein on the mitotic and meiotic kinetochore ensembles and hence chromosome segregation.
机译:减数分裂是一种专门的细胞分裂过程,通过该过程,染色体数目减少了一半,从而产生了配子。线粒体是一种将着丝粒连接到微管的多蛋白复合物,在染色体分离中起着至关重要的作用。 Ctf19是关键的中心线粒蛋白,可在发芽酵母中募集Ctf19复合物的所有其他非必需蛋白。早期的研究表明Ctf19复合体在有丝分裂和减数分裂过程中在着丝粒周围凝聚素富集中的作用,导致姐妹染色单体凝聚和减数分裂II分离。在这里,我们显示Ctf19对于减数分裂I特定独特事件的正确执行也是必不可少的,例如非同源着丝粒偶联,同源物配对,chiasmata解析以及同源物和姐妹染色单体相对于纺锤极的正确定向。此外,这项研究表明,减数分裂中忠实的染色体浓缩需要适当的动线粒功能。最后,这项研究表明,Ctf19的缺失对有丝分裂的线粒体完整性的影响不同于对有丝分裂的线粒体。因此,与有丝分裂相比,Ctf19的缺失导致减数分裂过程中染色体总体的失聚。因此,本研究首次报道了非必需的动粒单丝蛋白对有丝分裂和减数分裂的动粒单丝团以及染色体分离的不同影响。

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