Mechanism of capacitative Ca2+ entry (CCE): interaction between IP3 receptor and TRP links the internal calcium storage compartment to plasma membrane CCE channels.

Recent progress in hormone research Pub Date : 2000-01-01
L Birnbaumer, G Boulay, D Brown, M Jiang, A Dietrich, K Mikoshiba, X Zhu, N Qin
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Abstract

Activation of cells by agents that stimulate inositol trisphoshate (IP3) formation causes, via IP3 receptor (IP3R) activation, the release of Ca2+ from internal stores and also the entry of Ca2+ via plasma membrane cation channels, referred to as capacitative Ca2+ entry or CCE channels. Trp proteins have been proposed to be the unitary subunits forming CCE channels; however, there is no definitive proof for this hypothesis. We have now identified amino acid sequences of a Trp and of an IP3R that interact to form stable complexes. These complexes appear to form in vivo, as evidenced by co-immunoprecipitation of Trp with IP3R and by the fact that expression of the respective interacting sequences modulates development of CCE brought about by store depletion. The finding that a Trp-interacting sequence of IP3R interferes with natural CCE leads us to conclude that Trp proteins are, indeed, structural members of CCE channels. We conclude further that direct coupling of IP3R to Trp is a physiological mechanism by which cells trigger CCE in response to signals that stimulate phosphoinositide hydrolysis and IP3 formation. Pros and cons of various CCE activation models are discussed.

容性Ca2+进入(CCE)的机制:IP3受体和TRP的相互作用将内部钙储存室连接到质膜CCE通道。
通过IP3受体(IP3R)激活,刺激肌醇三磷酸酯(IP3)形成的药物激活细胞,从内部储存中释放Ca2+,并通过质膜阳离子通道(称为容性Ca2+进入通道或CCE通道)进入Ca2+。色氨酸蛋白被认为是形成CCE通道的单一亚基;然而,这一假设并没有确凿的证据。我们现在已经确定了色氨酸和IP3R相互作用形成稳定复合物的氨基酸序列。这些复合物似乎在体内形成,证明了Trp与IP3R的共同免疫沉淀,以及各自相互作用序列的表达调节了储存耗尽带来的CCE的发展。发现色氨酸与IP3R的相互作用序列干扰了天然CCE,这使我们得出结论,色氨酸蛋白确实是CCE通道的结构成员。我们进一步得出结论,IP3R与色氨酸的直接偶联是一种生理机制,细胞通过这种机制触发CCE,以响应刺激磷酸肌苷水解和IP3形成的信号。讨论了各种CCE激活模型的优缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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