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Anaphase-Promoting Complex/Cyclosome Controls the Stability of TPX2 during Mitotic Exit

机译:后期促进复合物/脂质体控制有丝分裂退出期间TPX2的稳定性。

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摘要

TPX2, a microtubule-associated protein, is required downstream of Ran-GTP to induce spindle assembly. TPX2 activity appears to be tightly regulated during the cell cycle, and we report here one molecular mechanism for this regulation. We found that TPX2 protein levels are cell cycle regulated, peaking in mitosis and declining sharply during mitotic exit. TPX2 is degraded in mitotic extracts, as well as in HeLa cells exiting from mitosis. This instability depends, both in vitro and in vivo, on the anaphase-promoting complex/cyclosome (APC/C), a ubiquitin ligase that controls mitotic progression. In a reconstituted system, TPX2 is efficiently ubiquitinated by APC/C that has been activated by Cdh1. Two discrete elements in TPX2 are required for recognition by APC/CCdh1: a KEN box and a novel element in amino acids 1 to 86. Interestingly, the latter element, which has no known APC/C recognition motifs, is required for the ubiquitination of TPX2 by APC/CCdh1 in vitro and for its degradation in vivo. We conclude that APC/CCdh1 controls the stability of TPX2, thereby ensuring accurate regulation of the spindle assembly in the cell cycle.
机译:TPX2是一种与微管相关的蛋白质,在Ran-GTP的下游需要诱导纺锤体组装。 TPX2活性似乎在细胞周期中受到严格调节,我们在这里报告了这种调节的一种分子机制。我们发现TPX2蛋白水平受细胞周期调节,在有丝分裂退出时有丝分裂达到峰值,并急剧下降。 TPX2在有丝分裂提取物中以及从有丝分裂中退出的HeLa细胞中均被降解。在体外和体内,这种不稳定性都取决于后期促进复合物/环体(APC / C),后者是一种控制有丝分裂进程的泛素连接酶。在重构的系统中,TPX2被Cdh1激活的APC / C有效地泛素化。 TPX2中的两个离散元素需要被APC / CCdh1识别:一个KEN盒和一个1至86位氨基酸的新元素。有趣的是,后者的泛素化需要一个未知的APC / C识别基序的元素。 TPX2通过APC / CCdh1在体外及其在体内的降解。我们得出的结论是,APC / CCdh1控制TPX2的稳定性,从而确保了细胞周期中纺锤体组件的精确调节。

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