Structures of the TRPM5 channel elucidate mechanisms of activation and inhibition

被引:33
作者
Ruan, Zheng [1 ]
Haley, Emery [1 ]
Orozco, Ian J. [1 ]
Sabat, Mark [2 ]
Myers, Richard [2 ]
Roth, Rebecca [1 ]
Du, Juan [1 ]
Lu, Wei [1 ]
机构
[1] Van Andel Inst, Grand Rapids, MI 49503 USA
[2] Takeda Calif Inc, San Diego, CA USA
基金
美国国家卫生研究院;
关键词
BEAM-INDUCED MOTION; BAYESIAN-APPROACH; ION-CHANNEL; CATION; CELLS; BOX; TRANSDUCTION; SELECTIVITY; CALCIUM; LIGAND;
D O I
10.1038/s41594-021-00607-4
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The Ca2+-activated TRPM5 channel plays essential roles in taste perception and insulin secretion. However, the mechanism by which Ca2+ regulates TRPM5 activity remains elusive. We report cryo-EM structures of the zebrafish TRPM5 in an apo closed state, a Ca2+-bound open state, and an antagonist-bound inhibited state. We define two novel ligand binding sites: a Ca2+ site (Ca-ICD) in the intracellular domain and an antagonist site in the transmembrane domain (TMD). The Ca-ICD site is unique to TRPM5 and has two roles: modulating the voltage dependence and promoting Ca2+ binding to the Ca-TMD site, which is conserved throughout TRPM channels. Conformational changes initialized from both Ca2+ sites cooperatively open the ion-conducting pore. The antagonist NDNA wedges into the space between the S1-S4 domain and pore domain, stabilizing the transmembrane domain in an apo-like closed state. Our results lay the foundation for understanding the voltage-dependent TRPM channels and developing new therapeutic agents. Cryo-EM structures of zebrafish TRPM5 reveal closed and Ca2+-bound open states, a unique Ca2+ binding site that modulates voltage sensitivity and the mechanism of antagonist action.
引用
收藏
页码:604 / +
页数:26
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