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The Saccharomyces cerevisiae MVP1 gene interacts with VPS1 and is required for vacuolar protein sorting.

机译:酿酒酵母MVP1基因与VPS1相互作用,是液泡蛋白分选所必需的。

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摘要

The VPS1 gene of Saccharomyces cerevisiae encodes an 80-kDa GTPase that associates with Golgi membranes and is required for the sorting of proteins to the yeast vacuole. Vps1p is a member of a growing family of high-molecular-weight GTPases that are found in a number of organisms and are involved in a variety of cellular processes. Vps1p is most similar to mammalian dynamin and the Drosophila Shibire protein, both of which have been shown to play a role in an early step of endocytosis. To identify proteins that interact with Vps1p, a genetic screen was designed to isolate multicopy suppressors of dominant-negative vps1 mutations. One such suppressor, MVP1, that exhibits genetic interaction with VPS1 and is itself required for vacuolar protein sorting has been isolated. Overproduction of Mvp1p will suppress several dominant alleles of VPS1, and suppression is dependent on the presence of wild-type Vps1p. MVP1 encodes a 59-kDa hydrophilic protein, Mvp1p, which appears to colocalize with Vps1p in vps1d and vps27 delta yeast cells. We therefore propose that Mvp1p and Vps1p act in concert to promote membrane traffic to the vacuole.
机译:酿酒酵母的VPS1基因编码一个80 kDa的GTPase,与高尔基体膜相关,是将蛋白质分选到酵母液泡中所必需的。 Vps1p是不断增长的高分子量GTPases家族的成员,该家族存在于许多生物中,并参与多种细胞过程。 Vps1p与哺乳动物动力蛋白和果蝇Shibire蛋白最相似,这两种蛋白均已显示在胞吞作用的早期阶段起作用。为了鉴定与Vps1p相互作用的蛋白质,设计了遗传筛选来分离显性负vps1突变的多拷贝抑制子。已经分离出一种这样的抑制子,MVP1,其表现出与VPS1的遗传相互作用,并且本身是液泡蛋白分选所必需的。 Mvp1p的过量生产将抑制VPS1的几个优势等位基因,并且抑制取决于野生型Vps1p的存在。 MVP1编码59 kDa的亲水蛋白Mvp1p,它似乎与vps1d和vps27三角洲酵母细胞中的Vps1p共定位。因此,我们建议Mvp1p和Vps1p协同行动,以促进膜运输到液泡。

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    Ekena, K; Stevens, T H;

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  • 年度 1995
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  • 正文语种 en
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