Department of Biochemistry and Molecular Biology, The University of Kansas Medical Center, Kansas City, KS 66160.
Department of Molecular Biosciences, College of Natural Sciences, The University of Texas at Austin, Austin, TX 78712.
Proc Natl Acad Sci U S A. 2024 Jul 2;121(27):e2403333121. doi: 10.1073/pnas.2403333121. Epub 2024 Jun 26.
The transient receptor potential melastatin (TRPM) tetrameric cation channels are involved in a wide range of biological functions, from temperature sensing and taste transduction to regulation of cardiac function, inflammatory pain, and insulin secretion. The structurally conserved TRPM cytoplasmic domains make up >70 % of the total protein. To investigate the mechanism by which the TRPM cytoplasmic domains contribute to gating, we employed electrophysiology and cryo-EM to study TRPM5-a channel that primarily relies on activation via intracellular Ca. Here, we show that activation of mammalian TRPM5 channels is strongly altered by Ca-dependent desensitization. Structures of rat TRPM5 identify a series of conformational transitions triggered by Ca binding, whereby formation and dissolution of cytoplasmic interprotomer interfaces appear to control activation and desensitization of the channel. This study shows the importance of the cytoplasmic assembly in TRPM5 channel function and sets the stage for future investigations of other members of the TRPM family.
瞬时受体电位 melastatin (TRPM) 四聚体阳离子通道参与广泛的生物学功能,从温度感应和味觉转导到心脏功能、炎症性疼痛和胰岛素分泌的调节。结构保守的 TRPM 细胞质结构域构成了总蛋白的 >70%。为了研究 TRPM 细胞质结构域对门控的作用机制,我们采用电生理学和 cryo-EM 研究主要通过细胞内 Ca 激活的 TRPM5-a 通道。在这里,我们表明哺乳动物 TRPM5 通道的激活受到 Ca 依赖性脱敏的强烈改变。大鼠 TRPM5 的结构确定了一系列由 Ca 结合触发的构象转变,其中细胞质同型体界面的形成和溶解似乎控制着通道的激活和脱敏。这项研究表明细胞质组装在 TRPM5 通道功能中的重要性,并为进一步研究 TRPM 家族的其他成员奠定了基础。