Liu Ji, Vasudevan Srividya, Kipreos Edward T
Department of Cellular Biology, University of Georgia, Athens, GA 30602-2607, USA.
Development. 2004 Aug;131(15):3513-25. doi: 10.1242/dev.01245. Epub 2004 Jun 23.
The faithful segregation of chromosomes during meiosis is vital for sexual reproduction. Currently, little is known about the molecular mechanisms regulating the initiation and completion of meiotic anaphase. We show that inactivation of CUL-2, a member of the cullin family of ubiquitin ligases, delays or abolishes meiotic anaphase II with no effect on anaphase I, indicating differential regulation during the two meiotic stages. In cul-2 mutants, the cohesin REC-8 is removed from chromosomes normally during meiosis II and sister chromatids separate, suggesting that the failure to complete anaphase results from a defect in chromosome movement rather than from a failure to sever chromosome attachments. CUL-2 is required for the degradation of cyclin B1 in meiosis and inactivation of cyclin B1 partially rescued the meiotic delay in cul-2 mutants. In cul-2 mutants, the failure to degrade cyclin B1 precedes the metaphase II arrest. CUL-2 is also required for at least two aspects of embryonic polarity. The extended meiosis II in cul-2 mutants induces polarity reversals that include reversed orientation of polarity proteins, P granules, pronuclei migration and asymmetric cell division. Independently of its role in meiotic progression, CUL-2 is required to limit the initiation/spread of the polarity protein PAR-2 in regions distant from microtubule organizing centers. Finally, we show that inactivation of the leucine-rich repeat protein ZYG-11 produces meiotic and polarity reversal defects similar to those observed in cul-2 mutants, suggesting that the two proteins function in the same pathways.
减数分裂过程中染色体的忠实分离对于有性生殖至关重要。目前,关于调节减数分裂后期起始和完成的分子机制知之甚少。我们发现,泛素连接酶cullin家族成员CUL-2的失活会延迟或消除减数分裂后期II,而对后期I没有影响,这表明在两个减数分裂阶段存在差异调节。在cul-2突变体中,黏连蛋白REC-8在减数分裂II期间正常地从染色体上移除,姐妹染色单体分离,这表明无法完成后期是由于染色体移动缺陷,而不是由于未能切断染色体连接。CUL-2是减数分裂中细胞周期蛋白B1降解所必需的,细胞周期蛋白B1的失活部分挽救了cul-2突变体中的减数分裂延迟。在cul-2突变体中,细胞周期蛋白B1降解失败先于中期II停滞。CUL-2对于胚胎极性的至少两个方面也是必需的。cul-2突变体中延长的减数分裂II会诱导极性反转,包括极性蛋白、P颗粒的方向反转、原核迁移和不对称细胞分裂。独立于其在减数分裂进程中的作用,CUL-2是限制极性蛋白PAR-2在远离微管组织中心区域的起始/扩散所必需的。最后,我们发现富含亮氨酸重复蛋白ZYG-11的失活会产生与cul-2突变体中观察到的类似的减数分裂和极性反转缺陷,这表明这两种蛋白在相同的途径中发挥作用。