Institute of Physiological Chemistry, Medical Faculty Carl Gustav Carus, Technische Universität Dresden, Dresden, Germany.
Department of Neuropediatrics Charité-Universitätsmedizin Berlin, Freie Universität Berlin, Humboldt-Universität zu Berlin, and Berlin Institute of Health, Berlin, Germany.
Nat Commun. 2021 Nov 11;12(1):6547. doi: 10.1038/s41467-021-26826-3.
Proper chromosome segregation is essential to avoid aneuploidy, yet this process fails with increasing age in mammalian oocytes. Here we report a role for the scarcely described protein CENP-V in oocyte spindle formation and chromosome segregation. We show that depending on the oocyte maturation state, CENP-V localizes to centromeres, to microtubule organizing centers, and to spindle microtubules. We find that Cenp-V oocytes feature severe deficiencies, including metaphase I arrest, strongly reduced polar body extrusion, increased numbers of mis-aligned chromosomes and aneuploidy, multipolar spindles, unfocused spindle poles and loss of kinetochore spindle fibres. We also show that CENP-V protein binds, diffuses along, and bundles microtubules in vitro. The spindle assembly checkpoint arrests about half of metaphase I Cenp-V oocytes from young adults only. This finding suggests checkpoint weakening in ageing oocytes, which mature despite carrying mis-aligned chromosomes. Thus, CENP-V is a microtubule bundling protein crucial to faithful oocyte meiosis, and Cenp-V oocytes reveal age-dependent weakening of the spindle assembly checkpoint.
正确的染色体分离对于避免非整倍体至关重要,但在哺乳动物卵母细胞中,这一过程会随着年龄的增长而失败。在这里,我们报告了一个鲜为人知的蛋白质 CENP-V 在卵母细胞纺锤体形成和染色体分离中的作用。我们表明,根据卵母细胞成熟状态,CENP-V 定位于着丝粒、微管组织中心和纺锤体微管。我们发现 Cenp-V 卵母细胞存在严重缺陷,包括中期 I 阻滞、极体挤出显著减少、染色体排列错误和非整倍体增加、多极纺锤体、纺锤体两极失焦以及动粒纺锤体纤维丢失。我们还表明,CENP-V 蛋白在体外结合、扩散并成束微管。纺锤体组装检查点仅在年轻成年期的大约一半中期 I Cenp-V 卵母细胞中停止。这一发现表明,老化卵母细胞中的检查点减弱,尽管携带染色体排列错误,但仍能成熟。因此,CENP-V 是一种对忠实的卵母细胞减数分裂至关重要的微管成束蛋白,而 Cenp-V 卵母细胞则揭示了纺锤体组装检查点随年龄的依赖性减弱。