College of Animal Science and Technology, Nanjing Agricultural University, China.
FEBS J. 2021 May;288(9):3055-3067. doi: 10.1111/febs.15634. Epub 2020 Nov 30.
Protein regulator of cytokinesis 1 (PRC1) is a microtubule bundling protein that is involved in the regulation of the central spindle bundle and spindle orientation during mitosis. However, the functions of PRC1 during meiosis have rarely been studied. In this study, we explored the roles of PRC1 during meiosis using an oocyte model. Our results found that PRC1 was expressed at all stages of mouse oocyte meiosis, and PRC1 accumulated in the midzone/midbody during anaphase/telophase I. Moreover, depleting PRC1 caused defects in polar body extrusion during mouse oocyte maturation. Further analysis found that PRC1 knockdown did not affect meiotic spindle formation or chromosome segregation; however, deleting PRC1 prevented formation of the midzone and midbody at the anaphase/telophase stage of meiosis I, which caused cytokinesis defects and further induced the formation of two spindles in the oocytes. PRC1 knockdown increased the level of tubulin acetylation, indicating that microtubule stability was affected. Furthermore, KIF4A and PRC1 showed similar localization in the midzone/midbody of oocytes at anaphase/telophase I, while the depletion of KIF4A affected the expression and localization of PRC1. The PRC1 mRNA injection rescued the defects caused by PRC1 knockdown in oocytes. In summary, our results suggest that PRC1 is critical for midzone/midbody formation and cytokinesis under regulation of KIF4A in mouse oocytes.
有丝分裂细胞蛋白 1(PRC1)是一种微管束蛋白,参与调节有丝分裂过程中的中心纺锤体束和纺锤体取向。然而,PRC1 在减数分裂中的功能很少被研究。在这项研究中,我们使用卵母细胞模型探索了 PRC1 在减数分裂中的作用。我们的结果发现,PRC1 在小鼠卵母细胞减数分裂的所有阶段都有表达,并且在后期/末期 I 中积累在中体/中体中。此外,耗尽 PRC1 会导致小鼠卵母细胞成熟过程中极体排出缺陷。进一步的分析发现,PRC1 敲低不影响减数分裂纺锤体的形成或染色体分离;然而,PRC1 的缺失阻止了减数分裂 I 后期/末期中体和中体的形成,导致胞质分裂缺陷,并进一步诱导卵母细胞中形成两个纺锤体。PRC1 敲低增加了微管乙酰化水平,表明微管稳定性受到影响。此外,KIF4A 和 PRC1 在后期/末期 I 的卵母细胞中体/中体中的定位相似,而 KIF4A 的耗竭影响了 PRC1 的表达和定位。PRC1 mRNA 注射挽救了 PRC1 敲低在卵母细胞中引起的缺陷。总之,我们的结果表明,PRC1 在 KIF4A 调节的小鼠卵母细胞中对于中体/中体的形成和胞质分裂是至关重要的。