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秀丽隐杆线虫 cyclin B3 对于包括缓解纺锤体检查点依赖的后期染色体分离阻滞在内的多个有丝分裂过程是必需的。

Caenorhabditis elegans cyclin B3 is required for multiple mitotic processes including alleviation of a spindle checkpoint-dependent block in anaphase chromosome segregation.

机构信息

Department of Genetics, University of Texas M. D. Anderson Cancer Center, Houston, TX, USA.

出版信息

PLoS Genet. 2010 Nov 24;6(11):e1001218. doi: 10.1371/journal.pgen.1001218.

Abstract

The master regulators of the cell cycle are cyclin-dependent kinases (Cdks), which influence the function of a myriad of proteins via phosphorylation. Mitotic Cdk1 is activated by A-type, as well as B1- and B2-type, cyclins. However, the role of a third, conserved cyclin B family member, cyclin B3, is less well defined. Here, we show that Caenorhabditis elegans CYB-3 has essential and distinct functions from cyclin B1 and B2 in the early embryo. CYB-3 is required for the timely execution of a number of cell cycle events including completion of the MII meiotic division of the oocyte nucleus, pronuclear migration, centrosome maturation, mitotic chromosome condensation and congression, and, most strikingly, progression through the metaphase-to-anaphase transition. Our experiments reveal that the extended metaphase delay in CYB-3-depleted embryos is dependent on an intact spindle assembly checkpoint (SAC) and results in salient defects in the architecture of holocentric metaphase chromosomes. Furthermore, genetically increasing or decreasing dynein activity results in the respective suppression or enhancement of CYB-3-dependent defects in cell cycle progression. Altogether, these data reveal that CYB-3 plays a unique, essential role in the cell cycle including promoting mitotic dynein functionality and alleviation of a SAC-dependent block in anaphase chromosome segregation.

摘要

细胞周期的主要调节因子是细胞周期蛋白依赖性激酶(Cdks),它们通过磷酸化影响无数蛋白质的功能。有丝分裂 Cdk1 被 A 型、B1 型和 B2 型细胞周期蛋白激活。然而,第三种保守的细胞周期蛋白 B 家族成员细胞周期蛋白 B3 的作用则不太明确。在这里,我们表明秀丽隐杆线虫的 CYB-3 在早期胚胎中具有与细胞周期蛋白 B1 和 B2 不同的重要和独特的功能。CYB-3 对于许多细胞周期事件的及时执行是必需的,包括卵细胞核的 MII 减数分裂的完成、原核迁移、中心体成熟、有丝分裂染色体浓缩和聚集,最显著的是,通过中期到后期的过渡。我们的实验表明,CYB-3 耗尽的胚胎中延长的中期延迟依赖于完整的纺锤体组装检查点(SAC),并导致全中心中期染色体结构的明显缺陷。此外,遗传上增加或减少动力蛋白活性会分别抑制或增强 CYB-3 依赖的细胞周期进程缺陷。总之,这些数据表明,CYB-3 在细胞周期中发挥独特的、必不可少的作用,包括促进有丝分裂动力蛋白的功能和缓解后期染色体分离中 SAC 依赖的阻滞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f021/2991249/6a7083b2bc2c/pgen.1001218.g001.jpg

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