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TRPM6 和 TRPM7 对异源 TRPM6/7 通道从胞质 Mg 和 Mg·ATP 的抑制中释放的作用不同。

TRPM6 and TRPM7 differentially contribute to the relief of heteromeric TRPM6/7 channels from inhibition by cytosolic Mg and Mg·ATP.

机构信息

Walther Straub Institute of Pharmacology and Toxicology, LMU Munich, Munich, Germany.

German Center for Lung Research, Munich, Germany.

出版信息

Sci Rep. 2017 Aug 18;7(1):8806. doi: 10.1038/s41598-017-08144-1.

Abstract

TRPM6 and its homologue TRPM7 are α-kinase-coupled divalent cation-selective channels activated upon reduction of cytosolic levels of Mg and Mg·ATP. TRPM6 is vital for organismal Mg balance. However, mechanistically the cellular role and functional nonredundancy of TRPM6 remain incompletely understood. Comparative analysis of native currents in primary cells from TRPM6- versus TRPM7-deficient mice supported the concept that native TRPM6 primarily functions as a constituent of heteromeric TRPM6/7 channels. However, heterologous expression of the human TRPM6 protein engendered controversial results with respect to channel characteristics including its regulation by Mg and Mg·ATP. To resolve this issue, we cloned the mouse TRPM6 (mTRPM6) cDNA and compared its functional characteristics to mouse TRPM7 (mTRPM7) after heterologous expression. Notably, we observed that mTRPM6 and mTRPM7 differentially regulate properties of heteromeric mTRPM6/7 channels: In the presence of mTRPM7, the extreme sensitivity of functionally expressed homomeric mTRPM6 to Mg is tuned to higher concentrations, whereas mTRPM6 relieves mTRPM7 from the tight inhibition by Mg·ATP. Consequently, the association of mTRPM6 with mTRPM7 allows for high constitutive activity of mTRPM6/7 in the presence of physiological levels of Mg and Mg·ATP, thus laying the mechanistic foundation for constant vectorial Mg transport specifically into epithelial cells.

摘要

TRPM6 和其同源物 TRPM7 是 α-激酶偶联的二价阳离子选择性通道,在细胞质中 Mg 和 Mg·ATP 水平降低时被激活。TRPM6 对生物体的 Mg 平衡至关重要。然而,其细胞作用和功能的非冗余性在机制上仍不完全清楚。对 TRPM6-和 TRPM7 缺陷型小鼠原代细胞中天然电流的比较分析支持了这样的概念,即天然 TRPM6 主要作为异源 TRPM6/7 通道的组成部分发挥作用。然而,人源 TRPM6 蛋白的异源表达在通道特性方面产生了有争议的结果,包括其对 Mg 和 Mg·ATP 的调节。为了解决这个问题,我们克隆了小鼠 TRPM6 (mTRPM6) cDNA,并在异源表达后比较了其与小鼠 TRPM7 (mTRPM7) 的功能特征。值得注意的是,我们观察到 mTRPM6 和 mTRPM7 对异源 mTRPM6/7 通道的特性有不同的调节作用:在存在 mTRPM7 的情况下,功能表达的同源 mTRPM6 对 Mg 的极端敏感性被调至更高的浓度,而 mTRPM6 使 mTRPM7 从 Mg·ATP 的紧密抑制中解脱出来。因此,mTRPM6 与 mTRPM7 的结合允许 mTRPM6/7 在生理水平的 Mg 和 Mg·ATP 存在下具有高的组成活性,从而为特定于上皮细胞的恒定向量性 Mg 转运奠定了机制基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20d5/5562840/b4ff7c3a3c21/41598_2017_8144_Fig1_HTML.jpg

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