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动力蛋白自组装和囊泡分裂机制:动力蛋白寡聚体如何在胞吞作用过程中切割网格蛋白包被陷窝的膜颈。

Dynamin self-assembly and the vesicle scission mechanism: how dynamin oligomers cleave the membrane neck of clathrin-coated pits during endocytosis.

机构信息

Department of Cell Genetics, Institute for Genetics, University of Cologne, Zülpicher Strasse 47a, Cologne, Germany.

出版信息

Bioessays. 2010 Dec;32(12):1033-9. doi: 10.1002/bies.201000086. Epub 2010 Oct 18.

Abstract

Recently, Gao et al. and Chappie et al. elucidated the crystal structures of the polytetrameric stalk domain of the dynamin-like virus resistance protein, MxA, and of the G-domain dimer of the large, membrane-deforming GTPase, dynamin, respectively. Combined, they provide a hypothetical oligomeric structure for the complete dynamin protein. Here, it is discussed how the oligomers are expected to form and how they participate in dynamin mediated vesicle fission during the process of endocytosis. The proposed oligomeric structure is compared with the novel mechanochemical model of dynamin function recently proposed by Bashkirov et al. and Pucadyil and Schmid. In conclusion, the new model of the dynamin oligomer has the potential to explain how short self-limiting fissogenic dynamin assemblies are formed and how concerted GTP hydrolysis is achieved. The oligomerisation of two other dynamin superfamily proteins, the guanylate binding proteins (GBPs) and the immunity-related GTPases (IRGs), is addressed briefly.

摘要

最近,Gao 等人和 Chappie 等人分别阐明了抗病毒蛋白 MxA 的多聚体尾部结构域和大膜变形 GTP 酶 dynamin 的 G 结构域二聚体的晶体结构。它们共同提供了完整 dynamin 蛋白的假设寡聚体结构。在这里,讨论了寡聚体如何形成以及它们如何在胞吞过程中参与 dynamin 介导的囊泡分裂。将提出的寡聚体结构与 Bashkirov 等人和 Pucadyil 和 Schmid 最近提出的 dynamin 功能的新机械化学模型进行了比较。总之,新的 dynamin 寡聚体模型有可能解释如何形成短暂的自限性裂合 dynamin 组装体以及如何实现协调的 GTP 水解。简要讨论了另外两种 dynamin 超家族蛋白,即鸟苷酸结合蛋白(GBP)和免疫相关 GTP 酶(IRG)的寡聚化。

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