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Vma9p(亚基e)是酵母V-ATP酶的一个整合膜V0亚基。

Vma9p (subunit e) is an integral membrane V0 subunit of the yeast V-ATPase.

作者信息

Compton Mark A, Graham Laurie A, Stevens Tom H

机构信息

Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403-1229, USA.

出版信息

J Biol Chem. 2006 Jun 2;281(22):15312-9. doi: 10.1074/jbc.M600890200. Epub 2006 Mar 27.

Abstract

The Saccharomyces cerevisiae vacuolar proton-translocating ATPase (V-ATPase) is composed of 14 subunits distributed between a peripheral V1 subcomplex and an integral membrane V0 subcomplex. Genome-wide screens have led to the identification of the newest yeast V-ATPase subunit, Vma9p. Vma9p (subunit e) is a small hydrophobic protein that is conserved from fungi to animals. We demonstrate that disruption of yeast VMA9 results in the failure of V1 and V0 V-ATPase subunits to assemble onto the vacuole and in decreased levels of the subunit a isoforms Vph1p and Stv1p. We also show that Vma9p is an integral membrane protein, synthesized and inserted into the endoplasmic reticulum (ER), which then localizes to the limiting membrane of the vacuole. All V0 subunits and V-ATPase assembly factors are required for Vma9p to efficiently exit the ER. In the ER, Vma9p and the V0 subunits interact with the V-ATPase assembly factor Vma21p. Interestingly, the association of Vma9p with the V0-Vma21p assembly complex is disrupted with the loss of any single V0 subunit. Similarly, Vma9p is required for V0 subunits Vph1p and Vma6p to associate with the V0-Vma21p complex. In contrast, the proteolipids associate with Vma21p even in the absence of Vma9p. These results demonstrate that Vma9p is an integral membrane subunit of the yeast V-ATPase V0 subcomplex and suggest a model for the arrangement of polypeptides within the V0 subcomplex.

摘要

酿酒酵母液泡质子转运ATP酶(V-ATP酶)由14个亚基组成,分布在外周V1亚复合体和整合膜V0亚复合体之间。全基因组筛选已鉴定出最新的酵母V-ATP酶亚基Vma9p。Vma9p(亚基e)是一种小的疏水蛋白,从真菌到动物都保守存在。我们证明,酵母VMA9的破坏导致V1和V0 V-ATP酶亚基无法组装到液泡上,并且亚基a异构体Vph1p和Stv1p的水平降低。我们还表明,Vma9p是一种整合膜蛋白,在内质网(ER)中合成并插入,然后定位于液泡的限制膜。所有V0亚基和V-ATP酶组装因子都是Vma9p有效离开内质网所必需的。在内质网中,Vma9p和V0亚基与V-ATP酶组装因子Vma21p相互作用。有趣的是,Vma9p与V0-Vma21p组装复合体的结合会因任何单个V0亚基的缺失而被破坏。同样,Vma9p是V0亚基Vph1p和Vma6p与V0-Vma21p复合体结合所必需的。相比之下,即使在没有Vma9p的情况下,脂类蛋白也能与Vma21p结合。这些结果表明,Vma9p是酵母V-ATP酶V0亚复合体的一个整合膜亚基,并提出了一个V0亚复合体内多肽排列的模型。

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