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中心体/纺锤体极相关蛋白通过促进肌动蛋白鸟苷酸交换因子向中央纺锤体的募集来调节胞质分裂。

Centrosome/spindle pole-associated protein regulates cytokinesis via promoting the recruitment of MyoGEF to the central spindle.

作者信息

Asiedu Michael, Wu Di, Matsumura Fumio, Wei Qize

机构信息

Department of Biochemistry, Kansas State University, Manhattan, KS 66506, USA.

出版信息

Mol Biol Cell. 2009 Mar;20(5):1428-40. doi: 10.1091/mbc.e08-01-0001. Epub 2009 Jan 7.

Abstract

Cooperative communications between the central spindle and the contractile ring are critical for the spatial and temporal regulation of cytokinesis. Here we report that MyoGEF, a guanine nucleotide exchange factor that localizes to the central spindle and cleavage furrow, interacts with centrosome/spindle pole-associated protein (CSPP), which is concentrated at the spindle pole and central spindle during mitosis and cytokinesis. Both in vitro and in vivo pulldown assays show that MyoGEF interacts with CSPP. The C-terminus of MyoGEF and N-terminus of CSPP are required for their interaction. Immunofluorescence analysis indicates that MyoGEF and CSPP colocalize at the central spindle. Depletion of CSPP or MyoGEF by RNA-interference (RNAi) not only causes defects in mitosis and cytokinesis, such as metaphase arrest and furrow regression, but also mislocalization of nonmuscle myosin II with a phosphorylated myosin regulatory light chain (p-MRLC). Importantly, CSPP depletion by RNAi interferes with MyoGEF localization at the central spindle. Finally, MyoGEF interacts with ECT2, and RNAi-mediated depletion of MyoGEF leads to mislocalization of ECT2 and RhoA during cytokinesis. Therefore, we propose that CSPP interacts with and recruits MyoGEF to the central spindle, where MyoGEF contributes to the spatiotemporal regulation of cytokinesis.

摘要

中心纺锤体与收缩环之间的协同通讯对于胞质分裂的空间和时间调控至关重要。在此,我们报告MyoGEF,一种定位于中心纺锤体和分裂沟的鸟嘌呤核苷酸交换因子,与中心体/纺锤体极相关蛋白(CSPP)相互作用,CSPP在有丝分裂和胞质分裂期间集中于纺锤体极和中心纺锤体。体外和体内下拉实验均表明MyoGEF与CSPP相互作用。MyoGEF的C末端和CSPP的N末端是它们相互作用所必需的。免疫荧光分析表明MyoGEF和CSPP在中心纺锤体共定位。通过RNA干扰(RNAi)耗尽CSPP或MyoGEF不仅会导致有丝分裂和胞质分裂缺陷,如中期停滞和沟回退,还会导致非肌肉肌球蛋白II与磷酸化肌球蛋白调节轻链(p-MRLC)的错误定位。重要的是,RNAi介导的CSPP耗尽会干扰MyoGEF在中心纺锤体的定位。最后,MyoGEF与ECT2相互作用,RNAi介导的MyoGEF耗尽会导致胞质分裂期间ECT2和RhoA的错误定位。因此,我们提出CSPP与MyoGEF相互作用并将其招募到中心纺锤体,在那里MyoGEF有助于胞质分裂的时空调控。

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