Zhu Qian, Jiang Zhaodi, He Xiangwei
The Ministry of Education Key Laboratory of Biosystems Homeostasis and Protection and Innovation Center for Cell Signaling Network, Life Sciences Institute, Zhejiang University, Hangzhou, China.
National Institute of Biological Sciences, Beijing, China.
J Cell Biol. 2022 Jan 3;221(1). doi: 10.1083/jcb.202104099. Epub 2021 Nov 8.
During sexual reproduction, the zygote must inherit exactly one centrosome (spindle pole body [SPB] in yeasts) from the gametes, which then duplicates and assembles a bipolar spindle that supports the subsequent cell division. Here, we show that in the fission yeast Schizosaccharomyces pombe, the fusion of SPBs from the gametes is blocked in polyploid zygotes. As a result, the polyploid zygotes cannot proliferate mitotically and frequently form supernumerary SPBs during subsequent meiosis, which leads to multipolar nuclear divisions and the generation of extra spores. The blockage of SPB fusion is caused by persistent SPB localization of Pcp1, which, in normal diploid zygotic meiosis, exhibits a dynamic association with the SPB. Artificially induced constitutive localization of Pcp1 on the SPB is sufficient to cause blockage of SPB fusion and formation of extra spores in diploids. Thus, Pcp1-dependent SPB quantity control is crucial for sexual reproduction and ploidy homeostasis in fission yeast.
在有性生殖过程中,合子必须从配子中精确继承一个中心体(酵母中的纺锤极体[SPB]),然后该中心体进行复制并组装一个双极纺锤体,以支持随后的细胞分裂。在此,我们表明,在裂殖酵母粟酒裂殖酵母中,多倍体合子中来自配子的SPB融合受到阻碍。结果,多倍体合子不能进行有丝分裂增殖,并且在随后的减数分裂过程中经常形成多余的SPB,这导致多极核分裂并产生额外的孢子。SPB融合的阻碍是由Pcp1在SPB上的持续定位引起的,在正常的二倍体合子减数分裂中,Pcp1与SPB表现出动态关联。在SPB上人工诱导Pcp1的组成型定位足以导致二倍体中SPB融合的阻碍和额外孢子的形成。因此,Pcp1依赖的SPB数量控制对于裂殖酵母的有性生殖和倍性稳态至关重要。