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兰尼碱受体与SNARE相关蛋白小突触泡蛋白的相互作用

Ryanodine receptor interaction with the SNARE-associated protein snapin.

作者信息

Zissimopoulos Spyros, West Duncan J, Williams Alan J, Lai F Anthony

机构信息

Wales Heart Research Institute, Department of Cardiology, Cardiff University School of Medicine, Heath Park, UK.

出版信息

J Cell Sci. 2006 Jun 1;119(Pt 11):2386-97. doi: 10.1242/jcs.02936.

Abstract

The ryanodine receptor (RyR) is a widely expressed intracellular calcium (Ca(2+))-release channel regulating processes such as muscle contraction and neurotransmission. Snapin, a ubiquitously expressed SNARE-associated protein, has been implicated in neurotransmission. Here, we report the identification of snapin as a novel RyR2-interacting protein. Snapin binds to a 170-residue predicted ryanodine receptor cytosolic loop (RyR2 residues 4596-4765), containing a hydrophobic segment required for snapin interaction. Ryanodine receptor binding of snapin is not isoform specific and is conserved in homologous RyR1 and RyR3 fragments. Consistent with peptide fragment studies, snapin interacts with the native ryanodine receptor from skeletal muscle, heart and brain. The snapin-RyR1 association appears to sensitise the channel to Ca(2+) activation in [(3)H]ryanodine-binding studies. Deletion analysis indicates that the ryanodine receptor interacts with the snapin C-terminus, the same region as the SNAP25-binding site. Competition experiments with native ryanodine receptor and SNAP25 suggest that these two proteins share an overlapping binding site on snapin. Thus, regulation of the association between ryanodine receptor and snapin might constitute part of the elusive molecular mechanism by which ryanodine-sensitive Ca(2+) stores modulate neurosecretion.

摘要

兰尼碱受体(RyR)是一种广泛表达的细胞内钙(Ca(2+))释放通道,可调节肌肉收缩和神经传递等过程。Snapin是一种普遍表达的SNARE相关蛋白,与神经传递有关。在此,我们报告了Snapin作为一种新型RyR2相互作用蛋白的鉴定。Snapin与一个预测的包含170个残基的兰尼碱受体胞质环(RyR2的4596 - 4765位残基)结合,该环包含Snapin相互作用所需的疏水片段。Snapin与兰尼碱受体的结合不具有亚型特异性,并且在同源的RyR1和RyR3片段中保守。与肽片段研究一致,Snapin与骨骼肌、心脏和大脑中的天然兰尼碱受体相互作用。在[(3)H]兰尼碱结合研究中,Snapin - RyR1的结合似乎使通道对Ca(2+)激活敏感。缺失分析表明,兰尼碱受体与Snapin的C末端相互作用,该区域与SNAP25结合位点相同。与天然兰尼碱受体和SNAP25的竞争实验表明,这两种蛋白在Snapin上共享一个重叠的结合位点。因此,兰尼碱受体与Snapin之间结合的调节可能构成了兰尼碱敏感的Ca(2+)储存调节神经分泌这一难以捉摸的分子机制的一部分。

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