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哺乳动物的外排体复合物是胞吐作用所必需的一种复合物,它会抑制微管蛋白聚合。

The mammalian exocyst, a complex required for exocytosis, inhibits tubulin polymerization.

作者信息

Wang Sheng, Liu Yan, Adamson Crista L, Valdez Gregorio, Guo Wei, Hsu Shu C

机构信息

Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, New Jersey 08854, USA.

出版信息

J Biol Chem. 2004 Aug 20;279(34):35958-66. doi: 10.1074/jbc.M313778200. Epub 2004 Jun 16.

Abstract

The exocyst is a 734-kDa complex essential for development. Perturbation of its function results in early embryonic lethality. Extensive investigation has revealed that this complex participates in multiple biological processes, including protein synthesis and vesicle/protein targeting to the plasma membrane. In this article we report that the exocyst may also play a role in modulating microtubule dynamics. Using monoclonal antibodies, we observed that endogenous exocyst subunits co-localized with microtubules and mitotic spindles in normal rat kidney cells. To test for a functional relationship between the exocyst complex and microtubules, we established an in vitro exocyst reconstitution assay and studied exocyst effect on microtubule dynamics. We found that the exocyst complex reconstituted from eight recombinant exocyst subunits inhibited tubulin polymerization in vitro. Deletion of exocyst subunit sec5, sec6, sec15, or exo70 diminished its tubulin polymerization inhibition activity. Surprisingly, exocyst subunit exo70 itself was also capable of inhibiting tubulin polymerization, although exocyst complex with exo70 deletion did not lose its activity completely. Overexpression of exo70 in NRK cells resulted in microtubule network disruption and the formation of filopodia-like plasma membrane protrusions. The formation of these membrane protrusions was greatly hampered by stabilizing microtubules with taxol. Overexpression of exo84, an exocyst subunit that did not show tubulin polymerization inhibition activity, did not cause this phenotype. Results shown in this article, along with a previous report that localized microtubule instability induces plasma membrane addition, implicates a novel role for the exocyst in modulating microtubule dynamics underlying exocytosis.

摘要

外泌体复合体是一种对发育至关重要的734 kDa复合体。其功能紊乱会导致早期胚胎致死。广泛的研究表明,该复合体参与多种生物学过程,包括蛋白质合成以及囊泡/蛋白质靶向至质膜。在本文中,我们报告外泌体复合体可能还在调节微管动力学中发挥作用。使用单克隆抗体,我们观察到内源性外泌体亚基在正常大鼠肾细胞中与微管和有丝分裂纺锤体共定位。为了测试外泌体复合体与微管之间的功能关系,我们建立了体外外泌体重组测定法,并研究了外泌体对微管动力学的影响。我们发现,由八个重组外泌体亚基重组而成的外泌体复合体在体外抑制微管蛋白聚合。缺失外泌体亚基sec5、sec6、sec15或exo70会减弱其对微管蛋白聚合的抑制活性。令人惊讶的是,外泌体亚基exo70本身也能够抑制微管蛋白聚合,尽管缺失exo70的外泌体复合体并未完全丧失其活性。在NRK细胞中过表达exo70会导致微管网络破坏以及丝状伪足样质膜突起的形成。用紫杉醇稳定微管会极大地阻碍这些膜突起的形成。过表达不显示微管蛋白聚合抑制活性的外泌体亚基exo84不会导致这种表型。本文所示结果,连同之前关于局部微管不稳定性诱导质膜添加的报告,暗示外泌体复合体在调节胞吐作用潜在的微管动力学中具有新作用。

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