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联会复合体蛋白 Zip1 促进减数分裂 I 中着丝粒的双定向。

The synaptonemal complex protein Zip1 promotes bi-orientation of centromeres at meiosis I.

机构信息

Cell Cycle and Cancer Biology, Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma, USA.

出版信息

PLoS Genet. 2009 Dec;5(12):e1000771. doi: 10.1371/journal.pgen.1000771. Epub 2009 Dec 11.

Abstract

In meiosis I, homologous chromosomes become paired and then separate from one another to opposite poles of the spindle. In humans, errors in this process are a leading cause of birth defects, mental retardation, and infertility. In most organisms, crossing-over, or exchange, between the homologous partners provides a link that promotes their proper, bipolar, attachment to the spindle. Attachment of both partners to the same pole can sometimes be corrected during a delay that is triggered by the spindle checkpoint. Studies of non-exchange chromosomes have shown that centromere pairing serves as an alternative to exchange by orienting the centromeres for proper microtubule attachment. Here, we demonstrate a new role for the synaptonemal complex protein Zip1. Zip1 localizes to the centromeres of non-exchange chromosomes in pachytene and mediates centromere pairing and segregation of the partners at meiosis I. Exchange chromosomes were also found to experience Zip1-dependent pairing at their centromeres. Zip1 was found to persist at centromeres, after synaptonemal complex disassembly, remaining there until microtubule attachment. Disruption of this centromere pairing, in spindle checkpoint mutants, randomized the segregation of exchange chromosomes. These results demonstrate that Zip1-mediated pairing of exchange chromosome centromeres promotes an initial, bipolar attachment of microtubules. This activity of Zip1 lessens the load on the spindle checkpoint, greatly reducing the chance that the cell will exit the checkpoint delay with an improperly oriented chromosome pair. Thus exchange, the spindle checkpoint, and centromere pairing are complementary mechanisms that ensure the proper segregation of homologous partners at meiosis I.

摘要

在减数分裂 I 中,同源染色体配对,然后彼此分离到纺锤体的相反两极。在人类中,这个过程中的错误是导致出生缺陷、智力迟钝和不育的主要原因。在大多数生物体中,同源对之间的交叉或交换提供了一个连接,促进了它们正确的两极与纺锤体的附着。两个伴侣附着在同一极有时可以在纺锤体检查点触发的延迟中得到纠正。对非交换染色体的研究表明,着丝粒配对作为交换的替代物,通过定向着丝粒进行适当的微管附着。在这里,我们证明了联会复合体蛋白 Zip1 的一个新作用。Zip1 在粗线期定位于非交换染色体的着丝粒上,并介导着丝粒配对和减数分裂 I 中伴侣的分离。还发现交换染色体在其着丝粒处经历依赖 Zip1 的配对。在联会复合体解体后,Zip1 仍定位于着丝粒上,直到微管附着。在纺锤体检查点突变体中,这种着丝粒配对的破坏使交换染色体的分离随机化。这些结果表明,Zip1 介导的交换染色体着丝粒配对促进了微管的初始两极附着。Zip1 的这种活性减轻了纺锤体检查点的负担,大大降低了细胞在没有正确定向的染色体对的情况下退出检查点延迟的机会。因此,交换、纺锤体检查点和着丝粒配对是互补机制,可确保减数分裂 I 中同源伴侣的正确分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c9e/2781170/7b8f97655d21/pgen.1000771.g001.jpg

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