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一种液泡型v-t-SNARE复合体,是体内和分离液泡中的主要形式,会被拆解并激活以进行对接和融合。

A vacuolar v-t-SNARE complex, the predominant form in vivo and on isolated vacuoles, is disassembled and activated for docking and fusion.

作者信息

Ungermann C, Nichols B J, Pelham H R, Wickner W

机构信息

Department of Biochemistry, Dartmouth Medical School, Hanover, New Hampshire 03755-3844, USA.

出版信息

J Cell Biol. 1998 Jan 12;140(1):61-9. doi: 10.1083/jcb.140.1.61.

Abstract

Homotypic vacuole fusion in yeast requires Sec18p (N-ethylmaleimide-sensitive fusion protein [NSF]), Sec17p (soluble NSF attachment protein [alpha-SNAP]), and typical vesicle (v) and target membrane (t) SNAP receptors (SNAREs). We now report that vacuolar v- and t-SNAREs are mainly found with Sec17p as v-t-SNARE complexes in vivo and on purified vacuoles rather than only transiently forming such complexes during docking, and disrupting them upon fusion. In the priming reaction, Sec18p and ATP dissociate this v-t-SNARE complex, accompanied by the release of Sec17p. SNARE complex structure governs each functional aspect of priming, as the v-SNARE regulates the rate of Sec17p release and, in turn, Sec17p-dependent SNARE complex disassembly is required for independent function of the two SNAREs. Sec17p physically and functionally interacts largely with the t-SNARE. (a) Antibodies to the t-SNARE, but not the v-SNARE, block Sec17p release. (b) Sec17p is associated with the t-SNARE in the absence of v-SNARE, but is not bound to the v-SNARE without t-SNARE. (c) Vacuoles with t-SNARE but no v-SNARE still require Sec17p/Sec18p priming, whereas their fusion partners with v-SNARE but no t-SNARE do not. Sec18p thus acts, upon ATP hydrolysis, to disassemble the v-t-SNARE complex, prime the t-SNARE, and release the Sec17p to allow SNARE participation in docking and fusion. These studies suggest that the analogous ATP-dependent disassembly of the 20-S complex of NSF, alpha-SNAP, and v- and t-SNAREs, which has been studied in detergent extracts, corresponds to the priming of SNAREs for docking rather than to the fusion of docked membranes.

摘要

酵母中的同型液泡融合需要Sec18p(N - 乙基马来酰亚胺敏感融合蛋白[NSF])、Sec17p(可溶性NSF附着蛋白[α - SNAP])以及典型的囊泡(v)和靶膜(t)可溶性NSF附着蛋白受体(SNAREs)。我们现在报告,液泡v - SNARE和t - SNARE在体内以及纯化的液泡上主要以v - t - SNARE复合物的形式与Sec17p结合,而不是仅在对接过程中短暂形成此类复合物,并在融合时将其破坏。在引发反应中,Sec18p和ATP使该v - t - SNARE复合物解离,同时释放Sec17p。SNARE复合物结构控制引发的各个功能方面,因为v - SNARE调节Sec17p释放的速率,反过来,Sec17p依赖的SNARE复合物解离是两个SNARE独立发挥功能所必需的。Sec17p在物理和功能上主要与t - SNARE相互作用。(a)针对t - SNARE而非v - SNARE的抗体可阻断Sec17p的释放。(b)在没有v - SNARE的情况下,Sec17p与t - SNARE相关联,但在没有t - SNARE的情况下不与v - SNARE结合。(c)具有t - SNARE但没有v - SNARE的液泡仍然需要Sec17p / Sec18p引发,而其具有v - SNARE但没有t - SNARE的融合伴侣则不需要。因此,Sec18p在ATP水解时发挥作用,分解v - t - SNARE复合物,引发t - SNARE,并释放Sec17p以允许SNARE参与对接和融合。这些研究表明,在去污剂提取物中研究的NSF、α - SNAP以及v - 和t - SNARE的20 - S复合物的类似ATP依赖性分解,对应于SNARE对接的引发,而不是对接膜的融合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03ae/2132603/6e0f2d8db700/JCB.14677f1.jpg

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