Bokhovchuk Fedir M, Bate Neil, Kovalevskaya Nadezda V, Goult Benjamin T, Spronk Chris A E M, Vuister Geerten W
Department of Molecular and Cell Biology, Leicester Institute of Structural and Chemical Biology , University of Leicester , Lancaster Road , Leicester LE1 9HN , United Kingdom.
JSC Spronk , Vilnius , Lithuania.
Biochemistry. 2018 May 8;57(18):2623-2635. doi: 10.1021/acs.biochem.7b01287. Epub 2018 Apr 20.
The transient receptor potential vanilloid channel subfamily member 5 (TRPV5) is a highly selective calcium ion channel predominately expressed in the kidney epithelium that plays an essential role in calcium reabsorption from renal infiltrate. In order to maintain Ca homeostasis, TRPV5 possesses a tightly regulated negative feedback mechanism, where the ubiquitous Ca binding protein calmodulin (CaM) directly binds to the intracellular TRPV5 C-terminus, thus regulating TRPV5. Here we report on the characterization of the TRPV5 C-terminal CaM binding site and its interaction with CaM at an atomistic level. We have solved the de novo solution structure of the TRPV5 C-terminus in complex with a CaM mutant, creating conditions that mimic the cellular basal Ca state. We demonstrate that under these conditions the TRPV5 C-terminus is exclusively bound to the CaM C-lobe only, while it confers conformational freedom to the CaM N-lobe. We also show that at elevated calcium levels, additional interactions between the TRPV5 C-terminus and CaM N-lobe occur, resulting in formation of a tight 1:1 complex, effectively making the N-lobe the calcium sensor. Together, these data are consistent with and support the novel model for Ca/CaM-dependent inactivation of TRPV channels as proposed by Bate and co-workers [ Bate , N. , et al. ( 2018 ) Biochemistry , ( 57), DOI: 10.1021/acs.biochem.7b01286 ].
瞬时受体电位香草酸亚型通道成员5(TRPV5)是一种高度选择性的钙离子通道,主要在肾上皮细胞中表达,在从肾浸润液中重吸收钙的过程中起重要作用。为了维持钙稳态,TRPV5具有严格调控的负反馈机制,其中普遍存在的钙结合蛋白钙调蛋白(CaM)直接与细胞内TRPV5的C末端结合,从而调节TRPV5。在此,我们报告TRPV5 C末端CaM结合位点的特征及其在原子水平上与CaM的相互作用。我们解析了TRPV5 C末端与CaM突变体复合物的全新溶液结构,创造了模拟细胞基础钙状态的条件。我们证明,在这些条件下,TRPV5 C末端仅与CaM的C叶结合,同时赋予CaM的N叶构象自由度。我们还表明,在钙水平升高时,TRPV5 C末端与CaM的N叶之间会发生额外的相互作用,导致形成紧密的1:1复合物,有效地使N叶成为钙传感器。总之,这些数据与Bate及其同事提出的TRPV通道钙/钙调蛋白依赖性失活的新模型一致并提供了支持[Bate, N., 等人 (2018) Biochemistry, (57), DOI: 10.1021/acs.biochem.7b01286]。