a Department of Biological Sciences , University of Bergen , Bergen , Norway.
b Sars International Centre for Marine Molecular Biology , University of Bergen , Bergen , Norway.
Cell Cycle. 2018;17(12):1425-1444. doi: 10.1080/15384101.2018.1486167. Epub 2018 Jul 23.
Oogenesis in the urochordate, Oikopleura dioica, occurs in a large coenocyst in which vitellogenesis precedes oocyte selection in order to adapt oocyte production to nutrient conditions. The animal has expanded Cyclin-Dependant Kinase 1 (CDK1) and Cyclin B paralog complements, with several expressed during oogenesis. Here, we addressed functional redundancy and specialization of CDK1 and cyclin B paralogs during oogenesis and early embryogenesis through spatiotemporal analyses and knockdown assays. CDK1a translocated from organizing centres (OCs) to selected meiotic nuclei at the beginning of the P4 phase of oogenesis, and its knockdown impaired vitellogenesis, nurse nuclear dumping, and entry of nurse nuclei into apoptosis. CDK1d-Cyclin Ba translocated from OCs to selected meiotic nuclei in P4, drove meiosis resumption and promoted nuclear envelope breakdown (NEBD). CDK1d-Cyclin Ba was also involved in histone H3S28 phosphorylation on centromeres and meiotic spindle assembly through regulating Aurora B localization to centromeres during prometaphase I. In other studied species, Cyclin B3 commonly promotes anaphase entry, but we found O. dioica Cyclin B3a to be non-essential for anaphase entry during oogenic meiosis. Instead, Cyclin B3a contributed to meiotic spindle assembly though its loss could be compensated by Cyclin Ba.
在尾索动物文昌鱼中,卵母细胞发生在一个大型合胞体中,其中卵黄发生先于卵母细胞选择,以适应卵母细胞的产生对营养条件的变化。文昌鱼的 Cyclin-Dependant Kinase 1(CDK1)和 Cyclin B 基因家族都得到了扩展,其中一些基因在卵母细胞发生过程中表达。在这里,我们通过时空分析和敲低实验来研究 CDK1 和 cyclin B 基因家族在卵母细胞发生和早期胚胎发生过程中的功能冗余和特化。CDK1a 在卵母细胞发生的 P4 期的早期从组织中心(OCs)转移到选定的减数分裂核中,其敲低会损害卵黄发生、滋养细胞核崩解以及滋养细胞核进入凋亡。CDK1d-Cyclin Ba 从 OCs 转移到 P4 中的选定的减数分裂核中,驱动减数分裂恢复,并促进核膜破裂(NEBD)。CDK1d-Cyclin Ba 还通过调节 Aurora B 在前期 I 中的着丝粒定位,参与组蛋白 H3S28 在着丝粒上的磷酸化和减数分裂纺锤体的组装。在其他研究的物种中,Cyclin B3 通常促进后期进入,但我们发现文昌鱼的 Cyclin B3a 对于卵母细胞减数分裂中的后期进入不是必需的。相反,Cyclin B3a 通过其缺失可以由 Cyclin Ba 补偿,从而有助于减数分裂纺锤体的组装。