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博尔格蛋白/Septin蛋白的相互作用以及哺乳动物Septin异二聚体、三聚体和丝状体的组装。

Borg/septin interactions and the assembly of mammalian septin heterodimers, trimers, and filaments.

作者信息

Sheffield Peter J, Oliver Carey J, Kremer Brandon E, Sheng Sitong, Shao Zhifeng, Macara Ian G

机构信息

Department of Microbiology and Center for Cell Signaling, University of Virginia School of Medicine, Charlottesville, Virginia 22908, USA.

出版信息

J Biol Chem. 2003 Jan 31;278(5):3483-8. doi: 10.1074/jbc.M209701200. Epub 2002 Nov 21.

Abstract

Septins constitute a family of guanine nucleotide-binding proteins that were first discovered in the yeast Saccharomyces cerevisiae but are also present in many other eukaryotes. In yeast they congregate at the bud neck and are required for cell division. Their function in metazoan cells is uncertain, but they have been implicated in exocytosis and cytokinesis. Septins have been purified from cells as hetero-oligomeric filaments, but their mechanism of assembly is unknown. Further studies have been limited by the difficulty in expressing functional septin proteins in bacteria. We now show that stable, soluble septin heterodimers can be produced by co-expression from bicistronic vectors in bacteria and that the co-expression of three septins results in their assembly into filaments. Pre-assembled dimers and trimers bind guanine nucleotide and show a slow GTPase activity. The assembly of a heterodimer from monomers in vitro is accompanied by GTP hydrolysis. Borg3, a downstream effector of the Cdc42 GTPase, binds specifically to a septin heterodimer composed of Sept6 and Sept7 and to the Sept2/6/7 trimer, but not to septin monomers or to other heterodimers. Septins associate through their C-terminal coiled-coil domains, and Borg3 appears to recognize the interface between these domains in Sept6 and Sept7.

摘要

Septins是一类鸟嘌呤核苷酸结合蛋白家族,最初在酿酒酵母中被发现,但在许多其他真核生物中也存在。在酵母中,它们聚集在芽颈处,是细胞分裂所必需的。它们在后生动物细胞中的功能尚不确定,但已涉及胞吐作用和胞质分裂。Septins已从细胞中纯化出来成为异源寡聚丝,但它们的组装机制尚不清楚。由于在细菌中表达功能性septin蛋白存在困难,进一步的研究受到了限制。我们现在表明,通过在细菌中从双顺反子载体共表达可以产生稳定、可溶的septin异二聚体,并且三种septin的共表达会导致它们组装成丝。预组装的二聚体和三聚体结合鸟嘌呤核苷酸并显示出缓慢的GTP酶活性。体外从单体组装异二聚体伴随着GTP水解。Borg3是Cdc42 GTP酶的下游效应器,它特异性地结合由Sept6和Sept7组成的septin异二聚体以及Sept2/6/7三聚体,但不结合septin单体或其他异二聚体。Septins通过其C末端的卷曲螺旋结构域相互结合,并且Borg3似乎识别Sept6和Sept7中这些结构域之间的界面。

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