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The VPS1 protein, a homolog of dynamin required for vacuolar protein sorting in Saccharomyces cerevisiae, is a GTPase with two functionally separable domains

机译:VPS1蛋白是酿酒酵母中液泡蛋白分选所需的动力蛋白的同源物,它是一种GTPase,具有两个功能上可分离的结构域

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摘要

The product of the VPS1 gene, Vps1p, is required for the sorting of soluble vacuolar proteins in the yeast Saccharomyces cerevisiae. We demonstrate here that Vps1p, which contains a consensus tripartite motif for guanine nucleotide binding, is capable of binding and hydrolyzing GTP. Vps1p is a member of a subfamily of large GTP-binding proteins whose members include the vertebrate Mx proteins, the yeast MGM1 protein, the Drosophila melanogaster shibire protein, and dynamin, a bovine brain protein that bundles microtubules in vitro. Disruption of microtubules did not affect the fidelity or kinetics of vacuolar protein sorting, indicating that Vps1p function is not dependent on microtubules. Based on mutational analyses, we propose a two-domain model for Vps1p function. When VPS1 was treated with hydroxylamine, half of all mutations isolated were found to be dominant negative with respect to vacuolar protein sorting. All of the dominant-negative mutations analyzed further mapped to the amino-terminal half of Vps1p and gave rise to full-length protein products. In contrast, recessive mutations gave rise to truncated or unstable protein products. Two large deletion mutations in VPS1 were created to further investigate Vps1p function. A mutant form of Vps1p lacking the carboxy-terminal half of the protein retained the capacity to bind GTP and did not interfere with sorting in a wild-type background. A mutant form of Vps1p lacking the entire GTP-binding domain interfered with vacuolar protein sorting in wild-type cells. We suggest that the amino-terminal domain of Vps1p provides a GTP-binding and hydrolyzing activity required for vacuolar protein sorting, and the carboxy-terminal domain mediates Vps1p association with an as yet unidentified component of the sorting apparatus.
机译:VPS1基因的产物Vps1p是对酿酒酵母中的可溶性液泡蛋白进行分选所必需的。我们在这里证明,Vps1p,其中包含鸟嘌呤核苷酸结合的共识三方基序,能够结合和水解GTP。 Vps1p是大GTP结合蛋白的一个亚家族的成员,其成员包括脊椎动物Mx蛋白,酵母MGM1蛋白,果蝇果蝇抑制蛋白和动力蛋白(一种在体外捆绑微管的牛脑蛋白)。微管的破坏不影响液泡蛋白分选的保真度或动力学,表明Vps1p功能不依赖于微管。基于突变分析,我们为Vps1p功能提出了一个两域模型。当用羟胺处理VPS1时,发现所有分离的突变中有一半相对于液泡蛋白分选为显性阴性。分析的所有显性负突变均进一步映射到Vps1p的氨基末端一半,并产生了全长蛋白质产物。相反,隐性突变产生截短或不稳定的蛋白质产物。在VPS1中创建了两个大的缺失突变,以进一步研究Vps1p的功能。缺少蛋白质羧基末端一半的Vps1p突变形式保留了结合GTP的能力,并且不干扰野生型背景中的分选。缺乏完整的GTP结合域的Vps1p突变形式干扰了野生型细胞中液泡蛋白的分选。我们建议,Vps1p的氨基末端结构域提供了液泡蛋白分选所需的GTP结合和水解活性,而羧基末端结构域介导了Vps1p与分选装置的一个尚未确定的组件的关联。

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  • 年度 1992
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