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遗传和形态学分析揭示了两种SNARE蛋白的C末端之间的关键相互作用以及胞吐SNARE复合体的平行四螺旋排列。

Genetic and morphological analyses reveal a critical interaction between the C-termini of two SNARE proteins and a parallel four helical arrangement for the exocytic SNARE complex.

作者信息

Katz L, Hanson P I, Heuser J E, Brennwald P

机构信息

Department of Cell Biology and Graduate Program in Cell Biology and Genetics, Cornell University Medical College, New York, NY 10021, USA.

出版信息

EMBO J. 1998 Nov 2;17(21):6200-9. doi: 10.1093/emboj/17.21.6200.

Abstract

In a screen for suppressors of a temperature-sensitive mutation in the yeast SNAP-25 homolog, Sec9, we have identified a gain-of-function mutation in the yeast synaptobrevin homolog, Snc2. The genetic properties of this suppression point to a specific interaction between the C-termini of Sec9 and Snc2 within the SNARE complex. Biochemical analysis of interactions between the wild-type and mutant proteins confirms this prediction, demonstrating specific effects of these mutations on interactions between the SNAREs. The location of the mutations suggests that the C-terminal H2 helical domain of Sec9 is likely to be aligned in parallel with Snc2 in the SNARE complex. To test this prediction, we examined the structure of the yeast exocytic SNARE complex by deep-etch electron microscopy. Like the neuronal SNARE complex, it is a rod approximately 14 nm long. Using epitope tags, antibodies and maltose-binding protein markers, we find that the helical domains of Sso, Snc and both halves of Sec9 are all aligned in parallel within the SNARE complex, suggesting that the yeast exocytic SNARE complex consists of a parallel four helix bundle. Finally, we find a similar arrangement for SNAP-25 in the neuronal SNARE complex. This provides strong evidence that the exocytic SNARE complex is a highly conserved structure composed of four parallel helical domains whose C-termini must converge in order to bring about membrane fusion.

摘要

在对酵母Sec9(酵母中SNAP - 25同源物)温度敏感突变的抑制子进行筛选时,我们在酵母突触融合蛋白同源物Snc2中鉴定出一个功能获得性突变。这种抑制作用的遗传特性表明,在SNARE复合体中,Sec9和Snc2的C末端之间存在特异性相互作用。对野生型和突变型蛋白之间相互作用的生化分析证实了这一预测,表明这些突变对SNARE之间的相互作用具有特异性影响。突变的位置表明,Sec9的C末端H2螺旋结构域可能在SNARE复合体中与Snc2平行排列。为了验证这一预测,我们通过深蚀刻电子显微镜检查了酵母外排SNARE复合体结构。与神经元SNARE复合体一样,它是一根长约14nm的杆状结构。使用表位标签、抗体和麦芽糖结合蛋白标记,我们发现Sso、Snc的螺旋结构域以及Sec9的两个部分在SNARE复合体内都是平行排列的,这表明酵母外排SNARE复合体由一个平行的四螺旋束组成。最后,我们在神经元SNARE复合体中发现了SNAP - 25的类似排列。这提供了有力证据,证明外排SNARE复合体是一种高度保守的结构,由四个平行的螺旋结构域组成,其C末端必须汇聚才能实现膜融合。

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