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半胱氨酸串珠蛋白对N型钙通道调节作用的分子决定因素

Molecular determinants of cysteine string protein modulation of N-type calcium channels.

作者信息

Miller Linda C, Swayne Leigh Anne, Kay Jason G, Feng Zhong-Ping, Jarvis Scott E, Zamponi Gerald W, Braun Janice E A

机构信息

Neuroscience Research Group, Department of Physiology and Biophysics, University of Calgary, Calgary, Alberta, T2N 4N1, Canada.

出版信息

J Cell Sci. 2003 Jul 15;116(Pt 14):2967-74. doi: 10.1242/jcs.00595. Epub 2003 Jun 3.

Abstract

Cysteine string proteins (CSPs) are secretory vesicle chaperones that are important for neurotransmitter release. We have previously reported an interaction of CSP with both heterotrimeric GTP-binding proteins (G proteins) and N-type calcium channels that results in a tonic G protein inhibition of the channels. In this report we directly demonstrate that two separate regions of CSP associate with G proteins. The N-terminal binding site of CSP, which includes the J domain, binds Galpha subunits but not Galphabeta subunits whereas the C terminal binding site of CSP associates with either free Galphabeta subunits or Galphabeta in complex with Galpha. The interaction of either binding site of CSP (CSP1-82 or CSP83-198) with G proteins elicits robust tonic inhibition of N-type calcium channel activity. However, CSP1-82 inhibition and CSP83-198 inhibition of calcium channels occur through distinct mechanisms. Calcium channel inhibition by CSP83-198 (but not CSP1-82) is completely blocked by co-expression of the synaptic protein interaction site (synprint) of the N-type channel, indicating that CSP83-198 inhibition is dependent on a physical interaction with the calcium channel. These results suggest that distinct binding sites of CSP can play a role in modulating G protein function and G protein inhibition of calcium channels.

摘要

半胱氨酸串珠蛋白(CSPs)是分泌囊泡伴侣蛋白,对神经递质释放至关重要。我们之前报道过CSP与异三聚体GTP结合蛋白(G蛋白)和N型钙通道之间存在相互作用,这种相互作用导致G蛋白对通道产生持续性抑制。在本报告中,我们直接证明了CSP的两个不同区域与G蛋白相关联。CSP的N端结合位点,包括J结构域,可结合Gα亚基,但不结合Gαβ亚基,而CSP的C端结合位点则与游离的Gαβ亚基或与Gα形成复合物的Gαβ亚基相关联。CSP的任一结合位点(CSP1 - 82或CSP83 - 198)与G蛋白的相互作用都会引发对N型钙通道活性的强烈持续性抑制。然而,CSP1 - 82和CSP83 - 198对钙通道的抑制作用是通过不同机制实现的。CSP83 - 198(而非CSP1 - 82)对钙通道的抑制作用可被N型通道的突触蛋白相互作用位点(synprint)的共表达完全阻断,这表明CSP83 - 198的抑制作用依赖于与钙通道的物理相互作用。这些结果表明,CSP的不同结合位点在调节G蛋白功能以及G蛋白对钙通道的抑制作用中可能发挥作用。

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