Sirtuin 5-driven meiotic spindle assembly and actin-based migration in mouse oocyte meiosis

卵母细胞 细胞生物学 锡尔图因 极体 减数分裂 染色体分离 菲拉明 生物 肌动蛋白解聚因子 肌动蛋白 化学 遗传学 肌动蛋白细胞骨架 细胞 细胞骨架 染色体 胚胎 基因 乙酰化
作者
Cong Ma,Xueke Zhang,Yingying Zhang,Hang Ruan,Xin Xu,Caiyun Wu,Zhi‐Ming Ding,Yunxia Cao
出处
期刊:Heliyon [Elsevier]
卷期号:10 (11): e32466-e32466
标识
DOI:10.1016/j.heliyon.2024.e32466
摘要

Sirtuin 5 (Sirt5), a member of the Sirtuin family, is involved in various intracellular biological processes. However, the function of Sirt5 in oocyte maturation has not been clearly elucidated. In this study, we observed that Sirt5 was persistently expressed during the meiotic division of mouse oocytes, with a notable decline in expression in aging oocytes. Sirt5 inhibition led to the failure of the first polar body extrusion and induced cell cycle arrest, indicative of unsuccessful oocyte maturation. Furthermore, Sirt5 inhibition was associated with the extrusion of abnormally large polar bodies, suggesting disrupted asymmetric oocyte division. Mechanistically, the inhibition of Sirt5 resulted in aberrant spindle assembly and disordered chromosome alignment in oocytes. Moreover, Sirt5 inhibition caused the spindle to be centrally located in the oocyte without migrating to the cortical region, consequently preventing the formation of the actin cap. Further investigation revealed that Sirt5 inhibition notably diminished the expression of phosphorylated cofilin and profilin1, while increasing cytoplasmic F-actin levels. These findings suggest that Sirt5 inhibition during oocyte maturation adversely affects spindle assembly and chromosome alignment and disrupts actin dynamics impairing spindle migration and contributing to the failure of symmetric oocyte division and maturation.

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