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酵母Snc蛋白与Sec9形成复合物。假定的SNARE蛋白之间的功能相互作用。

Yeast Snc proteins complex with Sec9. Functional interactions between putative SNARE proteins.

作者信息

Couve A, Gerst J E

出版信息

J Biol Chem. 1994 Sep 23;269(38):23391-4.

PMID:8089101
Abstract

Yeast possess two homologs of the synaptobrevin family of vesicle-associated proteins that are proposed to be involved in membrane recognition and to act as receptors for components of the fusion machinery in neurons. We have previously described the yeast homologs, Snc1 and Snc2, and demonstrated that they localize to secretory vesicles and are required for normal secretion. Yeast lacking Snc protein expression accumulate post-Golgi transport vesicles that contain secretory proteins. Therefore, Snc proteins are essential for the fusion of carrier vesicles with the plasma membrane, and this property appears to have been conserved in evolution. We have now examined whether Snc proteins interact with other components of the late secretory pathway in yeast. Here we show that Snc proteins form a tight genetic and physical interaction with a plasma membrane protein, Sec9. Sec9 is the yeast equivalent of SNAP-25, a second receptor protein from neurons that has been shown to interact with synaptobrevin. We suggest, then, that recognition of the plasma membrane by secretory vesicles may involve the formation of a Snc-Sec9 complex and that this interaction has evolved as a fundamental step in secretory processes.

摘要

酵母拥有两种与囊泡相关蛋白的突触结合蛋白家族同源物,据推测它们参与膜识别,并作为神经元中融合机制成分的受体。我们之前已经描述过酵母同源物Snc1和Snc2,并证明它们定位于分泌囊泡,是正常分泌所必需的。缺乏Snc蛋白表达的酵母会积累含有分泌蛋白的高尔基体后转运囊泡。因此,Snc蛋白对于载体囊泡与质膜的融合至关重要,并且这种特性在进化过程中似乎得到了保留。我们现在研究了Snc蛋白是否与酵母晚期分泌途径的其他成分相互作用。在这里我们表明,Snc蛋白与一种质膜蛋白Sec9形成紧密的遗传和物理相互作用。Sec9相当于酵母中的SNAP-25,SNAP-25是神经元中的第二种受体蛋白,已被证明与突触结合蛋白相互作用。那么,我们认为分泌囊泡对质膜的识别可能涉及Snc-Sec9复合物的形成,并且这种相互作用已演变为分泌过程中的一个基本步骤。

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