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突变型Sar1蛋白在鸟嘌呤核苷酸结合、GTP水解以及从内质网到高尔基体的无细胞转运中的活性。

Activities of mutant Sar1 proteins in guanine nucleotide binding, GTP hydrolysis, and cell-free transport from the endoplasmic reticulum to the Golgi apparatus.

作者信息

Saito Y, Kimura K, Oka T, Nakano A

机构信息

Molecular Membrane Biology Laboratory, RIKEN, Wako, Saitama, 351-0198, Japan.

出版信息

J Biochem. 1998 Oct;124(4):816-23. doi: 10.1093/oxfordjournals.jbchem.a022185.

Abstract

Sar1p belongs to a unique subfamily of the small GTPase superfamily and is essential for the formation of vesicles that transport proteins from the endoplasmic reticulum to the Golgi apparatus. We have obtained mutants of the yeast SAR1 gene, which show several different phenotypes in cell growth and protein transport [Nakano, A. , Otsuka, H., Yamagishi, M., Yamamoto, E., Kimura, K., Nishikawa, S., and Oka, T. (1994) J. Biochem. 116, 243-247; Yamanushi, T., Hirata, A., Oka, T., and Nakano, A. (1996) ibid. 120, 452-458]. In this study, we have purified five mutant Sar1 proteins using an Escherichia coli expression system and characterized their biochemical properties in detail. Three of them prefer GDP binding to GTP binding and are thus regarded as GDP-form mutants, and one is insensitive to the GTPase-activating protein and is almost fixed in the GTP-bound state. The GDP mutants are defective in vesicle formation in vitro, whereas the GTP mutant can drive vesicle formation but not the overall transport to the Golgi. These mutants will be useful for further understanding of the regulation of the GTPase cycle of Sar1p.

摘要

Sar1p属于小GTP酶超家族中一个独特的亚家族,对于将蛋白质从内质网运输到高尔基体的囊泡形成至关重要。我们获得了酵母SAR1基因的突变体,这些突变体在细胞生长和蛋白质运输方面表现出几种不同的表型[Nakano, A., Otsuka, H., Yamagishi, M., Yamamoto, E., Kimura, K., Nishikawa, S., and Oka, T. (1994) J. Biochem. 116, 243 - 247; Yamanushi, T., Hirata, A., Oka, T., and Nakano, A. (1996) ibid. 120, 452 - 458]。在本研究中,我们使用大肠杆菌表达系统纯化了五种突变型Sar1蛋白,并详细表征了它们的生化特性。其中三种更倾向于结合GDP而非GTP,因此被视为GDP形式突变体,另一种对GTP酶激活蛋白不敏感,几乎固定在GTP结合状态。GDP突变体在体外囊泡形成方面存在缺陷,而GTP突变体可以驱动囊泡形成,但不能驱动整体向高尔基体的运输。这些突变体将有助于进一步了解Sar1p的GTP酶循环调控。

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