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非洲爪蟾卵和分裂细胞中存在的微管相关蛋白XMAP230对微管动力学的影响。

Effect on microtubule dynamics of XMAP230, a microtubule-associated protein present in Xenopus laevis eggs and dividing cells.

作者信息

Andersen S S, Buendia B, Domínguez J E, Sawyer A, Karsenti E

机构信息

European Molecular Biology Laboratory, Cell Biology Program, Heidelberg, Germany.

出版信息

J Cell Biol. 1994 Dec;127(5):1289-99. doi: 10.1083/jcb.127.5.1289.

Abstract

The reorganization from a radial [corrected] interphase microtubule (MT) network into a bipolar spindle at the onset of mitosis involves a dramatic change in MT dynamics. Microtubule-associated proteins (MAPs) and other factors are thought to regulate MT dynamics both in interphase and in mitosis. In this study we report the purification and functional in vitro characterization of a 230-KD MAP from Xenopus egg extract (XMAP230). This protein is present in eggs, oocytes, testis and a Xenopus tissue culture cell line. It is apparently absent from non-dividing cells in which an immunologically related 200-kD protein is found. XMAP230 is composed of two isoforms with slightly different molecular masses and pIs. It is localized to interphase MTs, dissociates from MTs at the onset of prophase and specifically binds to spindle MTs during metaphase and anaphase. The dissociation constant of XMAP230 is 500 nM, the stoichiometry of binding to MTs is between 1:8 and 1:4, and the in vivo concentration is approximately 200 nM. Both isoforms are phosphorylated and have reduced affinity for microtubules in mitotic extracts. Analysis of the effect of XMAP230 on MT dynamics by video microscopy shows that it increases the growth rate, decreases the shrinking rate of MTs and strongly suppresses catastrophes. These results suggest that in vivo, XMAP230 participates in the control of the MT elongation rate, stabilizes MTs and locally modulates MT dynamics during mitosis.

摘要

在有丝分裂开始时,从径向[校正后]的间期微管(MT)网络重组为双极纺锤体涉及MT动力学的显著变化。微管相关蛋白(MAPs)和其他因子被认为在间期和有丝分裂中调节MT动力学。在本研究中,我们报告了从非洲爪蟾卵提取物中纯化出的一种230-kD MAP(XMAP230)及其体外功能特性。这种蛋白质存在于卵、卵母细胞、睾丸和一种非洲爪蟾组织培养细胞系中。在未分裂细胞中显然不存在,而在其中发现了一种免疫相关的200-kD蛋白质。XMAP230由两种分子量和pI略有不同的同工型组成。它定位于间期MTs,在前期开始时从MTs上解离,在中期和后期特异性结合纺锤体MTs。XMAP230的解离常数为500 nM,与MTs的结合化学计量比在1:8至1:4之间,体内浓度约为200 nM。两种同工型都被磷酸化,在有丝分裂提取物中对微管的亲和力降低。通过视频显微镜分析XMAP230对MT动力学的影响表明,它增加了MT的生长速率,降低了MT的收缩速率,并强烈抑制灾变。这些结果表明,在体内,XMAP230参与控制MT伸长率,稳定MTs,并在有丝分裂期间局部调节MT动力学。

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