Fu Chuanhai, Yan Feng, Wu Fang, Wu Quan, Whittaker Joseph, Hu Haiying, Hu Renming, Yao Xuebiao
Laboratory of Cellular Dynamics, Hefei National Laboratory and the University of Science and Technology of China, Hefei 230027, China.
Cell Res. 2007 May;17(5):449-57. doi: 10.1038/cr.2007.32.
During cell division, chromosome segregation is orchestrated by the interaction of spindle microtubules with the centromere. A dramatic remodeling of interpolar microtubules into an organized central spindle between the separating chromatids is required for the initiation and execution of cytokinesis. Central spindle organization requires mitotic kinesins, the chromosomal passenger protein complex, and microtubule bundling protein PRC1. PRC1 is phosphorylated by Cdc2 at Thr470 and Thr481 during mitosis. However, the functional relevance of PRC1 phosphorylation at Thr470 has remained elusive. Here we show that expression of the non-phosphorylatable mutant PRC1(T470A) but not the phospho-mimicking mutant PRC1(T470E) causes aberrant organization of the central spindle. Immunoprecipitation experiment indicates that both PRC1(T470A) and PRC1(T470E) mutant proteins associate with wild-type PRC1, suggesting that phosphorylation of Thr470 does not alter PRC1 self-association. In addition, in vitro co-sedimentation experiment showed that PRC1 binds to microtubule independent of the phosphorylation state of Thr470. Gel-filtration experiment suggested that phosphorylation of Thr470 promotes oligomerization of PRC1. Given the fact that prevention of the Thr470 phosphorylation inhibits PRC1 oligomerization in vitro and causes an aberrant organization of central spindle in vivo, we propose that this phosphorylation-dependent PRC1 oligomerization ensures that central spindle assembly occurs at the appropriate time in the cell cycle.
在细胞分裂过程中,染色体分离由纺锤体微管与着丝粒的相互作用精心安排。胞质分裂的起始和执行需要将极间微管戏剧性地重塑为分离染色单体之间有组织的中央纺锤体。中央纺锤体的组织需要有丝分裂驱动蛋白、染色体乘客蛋白复合体和微管成束蛋白PRC1。在有丝分裂期间,PRC1在苏氨酸470和481处被Cdc2磷酸化。然而,PRC1在苏氨酸470处磷酸化的功能相关性仍然难以捉摸。在这里,我们表明不可磷酸化突变体PRC1(T470A)的表达而非磷酸化模拟突变体PRC1(T470E)的表达会导致中央纺锤体的异常组织。免疫沉淀实验表明,PRC1(T470A)和PRC1(T470E)突变蛋白都与野生型PRC1结合,这表明苏氨酸470的磷酸化不会改变PRC1的自缔合。此外,体外共沉降实验表明,PRC1与微管的结合不依赖于苏氨酸470的磷酸化状态。凝胶过滤实验表明,苏氨酸470的磷酸化促进PRC1的寡聚化。鉴于在体外防止苏氨酸470磷酸化会抑制PRC1寡聚化并在体内导致中央纺锤体的异常组织,我们提出这种磷酸化依赖性PRC1寡聚化确保中央纺锤体组装在细胞周期的适当时间发生。