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CENP-A在减数分裂和有丝分裂过程中对线虫全着丝粒染色体分离的不同作用。

Differential role of CENP-A in the segregation of holocentric C. elegans chromosomes during meiosis and mitosis.

作者信息

Monen Joost, Maddox Paul S, Hyndman Francie, Oegema Karen, Desai Arshad

机构信息

Ludwig Institute for Cancer Research, Department of Cellular and Molecular Medicine, UCSD Biomedical Sciences Graduate Program, UCSD CMM-E, Room 3052, 9500 Gilman Drive, La Jolla, CA 92093-0653, USA.

出版信息

Nat Cell Biol. 2005 Dec;7(12):1248-55. doi: 10.1038/ncb1331. Epub 2005 Nov 6.

Abstract

Two distinct chromosome architectures are prevalent among eukaryotes: monocentric, in which localized centromeres restrict kinetochore assembly to a single chromosomal site, and holocentric, in which diffuse kinetochores form along the entire chromosome length. During mitosis, both chromosome types use specialized chromatin, containing the histone H3 variant CENP-A, to direct kinetochore assembly. For the segregation of recombined homologous chromosomes during meiosis, monocentricity is thought to be crucial for limiting spindle-based forces to one side of a crossover and to prevent recombined chromatids from being simultaneously pulled towards both spindle poles. The mechanisms that allow holocentric chromosomes to avert this fate remain uncharacterized. Here, we show that markedly different mechanisms segregate holocentric chromosomes during meiosis and mitosis in the nematode Caenorhabditis elegans. Immediately prior to oocyte meiotic segregation, outer-kinetochore proteins were recruited to cup-like structures on the chromosome surface via a mechanism that is independent of CENP-A. In striking contrast to mitosis, both oocyte meiotic divisions proceeded normally following depletion of either CENP-A or the closely associated centromeric protein CENP-C. These findings highlight a pronounced difference between the segregation of holocentric chromosomes during meiosis and mitosis and demonstrate the potential to uncouple assembly of outer-kinetochore proteins from CENP-A chromatin.

摘要

两种不同的染色体结构在真核生物中普遍存在

单着丝粒型,其中局部着丝粒将动粒组装限制在单个染色体位点;以及全着丝粒型,其中弥散的动粒沿着整个染色体长度形成。在有丝分裂期间,这两种染色体类型都利用含有组蛋白H3变体CENP - A的特殊染色质来指导动粒组装。对于减数分裂期间重组同源染色体的分离,单着丝粒被认为对于将基于纺锤体的力限制在交叉点的一侧并防止重组染色单体同时被拉向两个纺锤极至关重要。全着丝粒染色体避免这种命运的机制仍未得到表征。在这里,我们表明,在秀丽隐杆线虫的减数分裂和有丝分裂过程中,全着丝粒染色体的分离机制明显不同。在卵母细胞减数分裂分离之前,外动粒蛋白通过一种独立于CENP - A的机制被招募到染色体表面的杯状结构上。与有丝分裂形成鲜明对比的是,在CENP - A或紧密相关的着丝粒蛋白CENP - C耗尽后,卵母细胞的两次减数分裂都正常进行。这些发现突出了减数分裂和有丝分裂期间全着丝粒染色体分离之间的显著差异,并证明了将外动粒蛋白组装与CENP - A染色质解偶联的潜力。

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