首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Yeast synaptobrevin homologs are modified posttranslationally by the addition of palmitate.
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Yeast synaptobrevin homologs are modified posttranslationally by the addition of palmitate.

机译:通过添加棕榈酸酯,在翻译后修饰酵母突触壁蛋白的同源物。

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摘要

Yeast possess two homologs of the synaptobrevin family of vesicle-associated membrane proteins that function in membrane recognition and vesicle fusion. Yeast proteins Snc1 and Snc2 localize to secretory vesicles and are required for constitutive exocytosis. They also form a physical complex with a plasma membrane protein, Sec9, which is necessary for vesicle docking and fusion to occur in vivo. Formation of this molecular complex, as a prerequisite for vesicle fusion, appears to have been conserved evolutionarily. Here we demonstrate that Snc proteins undergo a single posttranslational modification with the addition of a palmitate moiety to Cys-95 in Snc1. Modification of Cys-95 (which is located proximal to the transmembrane domain) is rapid, occurs in the endoplasmic reticulum, and is long-lasting. Mutation of Cys-95 to Ser-95 blocks palmitoylation and appears to affect Snc protein stability. This provides evidence that synaptobrevin-like proteins are modified posttranslationally, and we predict that fatty acylation may be common to those found in higher eukaryotes.
机译:酵母具有与囊泡相关的膜蛋白的突触臂蛋白家族的两个同源物,其在膜识别和囊泡融合中起作用。酵母蛋白Snc1和Snc2定位于分泌小泡,是组成型胞吐作用所必需的。它们还与质膜蛋白Sec9形成物理复合物,这对于体内发生囊泡对接和融合是必需的。这种分子复合物的形成,作为囊泡融合的先决条件,似乎在进化上是保守的。在这里,我们证明Snc蛋白经历了单个翻译后修饰,并向Snc1中的Cys-95添加了一个棕榈酸酯部分。 Cys-95(位于跨膜结构域的近端)的修饰迅速,发生在内质网中,并且持续时间长。将Cys-95突变为Ser-95可阻止棕榈酰化,并似乎影响Snc蛋白质的稳定性。这提供了突触丝蛋白样蛋白在翻译后被修饰的证据,并且我们预测脂肪酰化可能是高等真核生物中常见的。

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