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钙调蛋白对 TRPV5 的作用及其受甲状旁腺激素调节的分子机制。

Molecular mechanisms of calmodulin action on TRPV5 and modulation by parathyroid hormone.

机构信息

Nijmegen Center for Molecular Life Sciences, 286 Physiology, Radboud University Nijmegen Medical Center, PO Box 9101, 6500 HB Nijmegen, Netherlands.

出版信息

Mol Cell Biol. 2011 Jul;31(14):2845-53. doi: 10.1128/MCB.01319-10. Epub 2011 May 16.

Abstract

The epithelial Ca(2+) channel transient receptor potential vanilloid 5 (TRPV5) constitutes the apical entry gate for active Ca(2+) reabsorption in the kidney. Ca(2+) influx through TRPV5 induces rapid channel inactivation, preventing excessive Ca(2+) influx. This inactivation is mediated by the last ∼30 residues of the carboxy (C) terminus of the channel. Since the Ca(2+)-sensing protein calmodulin has been implicated in Ca(2+)-dependent regulation of several TRP channels, the potential role of calmodulin in TRPV5 function was investigated. High-resolution nuclear magnetic resonance (NMR) spectroscopy revealed a Ca(2+)-dependent interaction between calmodulin and a C-terminal fragment of TRPV5 (residues 696 to 729) in which one calmodulin binds two TRPV5 C termini. The TRPV5 residues involved in calmodulin binding were mutated to study the functional consequence of releasing calmodulin from the C terminus. The point mutants TRPV5-W702A and TRPV5-R706E, lacking calmodulin binding, displayed a strongly diminished Ca(2+)-dependent inactivation compared to wild-type TRPV5, as demonstrated by patch clamp analysis. Finally, parathyroid hormone (PTH) induced protein kinase A (PKA)-dependent phosphorylation of residue T709, which diminished calmodulin binding to TRPV5 and thereby enhanced channel open probability. The TRPV5-W702A mutant exhibited a significantly increased channel open probability and was not further stimulated by PTH. Thus, calmodulin negatively modulates TRPV5 activity, which is reversed by PTH-mediated channel phosphorylation.

摘要

上皮细胞钙通道瞬时受体电位香草素 5(TRPV5)构成了肾脏中主动钙重吸收的顶端入口门。通过 TRPV5 的钙内流诱导快速通道失活,防止过多的钙内流。这种失活由通道羧基(C)末端的最后约 30 个残基介导。由于钙敏蛋白已被牵连到几种 TRP 通道的钙依赖性调节中,因此研究了钙调蛋白在 TRPV5 功能中的潜在作用。高分辨率核磁共振(NMR)光谱显示钙调蛋白与 TRPV5 的 C 末端片段(残基 696 至 729)之间存在钙依赖性相互作用,其中一个钙调蛋白结合两个 TRPV5 C 末端。突变 TRPV5 残基以研究从 C 末端释放钙调蛋白的功能后果。缺乏钙调蛋白结合的 TRPV5-W702A 和 TRPV5-R706E 点突变体与野生型 TRPV5 相比,表现出强烈的钙依赖性失活减少,如通过膜片钳分析所示。最后,甲状旁腺激素(PTH)诱导残基 T709 的蛋白激酶 A(PKA)依赖性磷酸化,从而减少钙调蛋白与 TRPV5 的结合,从而增强通道开放概率。TRPV5-W702A 突变体表现出明显增加的通道开放概率,并且不受 PTH 的进一步刺激。因此,钙调蛋白负调节 TRPV5 活性,而 PTH 介导的通道磷酸化则逆转了这种活性。

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