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利用整体染色体的 4D 追踪揭示线虫卵母细胞中的着丝粒组件功能。

Kinetochore component function in C. elegans oocytes revealed by 4D tracking of holocentric chromosomes.

机构信息

Université Paris Cité, CNRS, Institut Jacques Monod, F-75013, Paris, France.

Universitat Politècnica de Catalunya, 08028, Barcelona, Spain.

出版信息

Nat Commun. 2023 Jul 7;14(1):4032. doi: 10.1038/s41467-023-39702-z.

Abstract

During cell division, chromosome congression to the spindle center, their orientation along the spindle long axis and alignment at the metaphase plate depend on interactions between spindle microtubules and kinetochores, and are pre-requisite for chromosome bi-orientation and accurate segregation. How these successive phases are controlled during oocyte meiosis remains elusive. Here we provide 4D live imaging during the first meiotic division in C. elegans oocytes with wild-type or disrupted kinetochore protein function. We show that, unlike in monocentric organisms, holocentric chromosome bi-orientation is not strictly required for accurate chromosome segregation. Instead, we propose a model in which initial kinetochore-localized BHC module (comprised of BUB-1, HCP-1/2 and CLS-2)-dependent pushing acts redundantly with Ndc80 complex-mediated pulling for accurate chromosome segregation in meiosis. In absence of both mechanisms, homologous chromosomes tend to co-segregate in anaphase, especially when initially mis-oriented. Our results highlight how different kinetochore components cooperate to promote accurate holocentric chromosome segregation in oocytes of C. elegans.

摘要

在细胞分裂过程中,染色体向纺锤体中心聚集、沿着纺锤体长轴定向排列以及在中期板上对齐,这依赖于纺锤体微管和动粒之间的相互作用,是染色体双定向和准确分离的前提。卵母细胞减数分裂过程中这些连续阶段是如何被调控的仍然难以捉摸。在这里,我们提供了野生型或破坏动粒蛋白功能的 C. elegans 卵母细胞第一次减数分裂的 4D 活细胞成像。我们表明,与单核细胞生物不同,全染色体双定向对于准确的染色体分离并非严格必需。相反,我们提出了一个模型,其中初始动粒定位的 BHC 模块(由 BUB-1、HCP-1/2 和 CLS-2 组成)依赖的推动与 Ndc80 复合物介导的拉动冗余,以在减数分裂中实现准确的染色体分离。在这两种机制都不存在的情况下,同源染色体在后期往往会共同分离,尤其是在最初错位时。我们的研究结果突出了不同的动粒成分如何合作,以促进 C. elegans 卵母细胞中全染色体的准确分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfa6/10329006/f40dfa5c5cd5/41467_2023_39702_Fig1_HTML.jpg

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