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通过酵母致死性巨幼虫/突触结合蛋白同源物Sro7在体外重建Rab GTP酶依赖性囊泡聚集。

In vitro reconstitution of Rab GTPase-dependent vesicle clustering by the yeast lethal giant larvae/tomosyn homolog, Sro7.

作者信息

Rossi Guendalina, Watson Kelly, Demonch Mallory, Temple Brenda, Brennwald Patrick

机构信息

From the Departments of Cell Biology and Physiology and.

Biochemistry and Biophysics, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599.

出版信息

J Biol Chem. 2015 Jan 2;290(1):612-24. doi: 10.1074/jbc.M114.595892. Epub 2014 Nov 17.

Abstract

Intracellular traffic in yeast between the Golgi and the cell surface is mediated by vesicular carriers that tether and fuse in a fashion that depends on the function of the Rab GTPase, Sec4. Overexpression of either of two Sec4 effectors, Sro7 or Sec15, results in the formation of a cluster of post-Golgi vesicles within the cell. Here, we describe a novel assay that recapitulates post-Golgi vesicle clustering in vitro utilizing purified Sro7 and vesicles isolated from late secretory mutants. We show clustering in vitro closely replicates the in vivo clustering process as it is highly dependent on both Sro7 and GTP-Sec4. We also make use of this assay to characterize a novel mutant form of Sro7 that results in a protein that is specifically defective in vesicle clustering both in vivo and in vitro. We show that this mutation acts by effecting a conformational change in Sro7 from the closed to a more open structure. Our analysis demonstrates that the N-terminal propeller needs to be able to engage the C-terminal tail for vesicle clustering to occur. Consistent with this, we show that occupancy of the N terminus of Sro7 by the t-SNARE Sec9, which results in the open conformation of Sro7, also acts to inhibit vesicle cluster formation by Sro7. This suggests a model by which a conformational switch in Sro7 acts to coordinate Rab-mediated vesicle tethering with SNARE assembly by requiring a single conformational state for both of these processes to occur.

摘要

酵母细胞内高尔基体与细胞表面之间的物质运输由囊泡载体介导,这些载体以一种依赖于Rab GTP酶Sec4功能的方式进行拴系和融合。Sec4的两种效应器Sro7或Sec15中的任何一种过表达,都会导致细胞内形成一群高尔基体后囊泡。在这里,我们描述了一种新的检测方法,该方法利用纯化的Sro7和从晚期分泌突变体中分离的囊泡在体外重现高尔基体后囊泡聚集。我们发现体外聚集过程与体内聚集过程高度相似,因为它高度依赖于Sro7和GTP-Sec4。我们还利用该检测方法对一种新的Sro7突变形式进行了表征,该突变形式导致一种在体内和体外的囊泡聚集方面都存在特异性缺陷的蛋白质。我们表明,这种突变通过使Sro7的构象从封闭结构转变为更开放的结构而起作用。我们的分析表明,N端螺旋桨结构需要能够与C端尾巴结合才能发生囊泡聚集。与此一致的是,我们发现t-SNARE Sec9占据Sro7的N端,导致Sro7呈开放构象,这也会抑制Sro7介导的囊泡簇形成。这提示了一种模型,即Sro7中的构象开关通过要求这两个过程都处于单一构象状态,来协调Rab介导的囊泡拴系与SNARE组装。

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