Department of Cell and Developmental Biology, University College London, Gower Street, London WC1E 6BT, UK.
Department of Dermatology, Graduate School of Biomedical and Health Sciences, Hiroshima University, Hiroshima, Japan.
Sci Signal. 2023 Aug 22;16(799):eadg0661. doi: 10.1126/scisignal.adg0661.
TPC2 is a pathophysiologically relevant lysosomal ion channel that is activated directly by the phosphoinositide PI(3,5)P and indirectly by the calcium ion (Ca)-mobilizing molecule NAADP through accessory proteins that associate with the channel. TPC2 toggles between PI(3,5)P-induced, sodium ion (Na)-selective and NAADP-induced, Ca-permeable states in response to these cues. To address the molecular basis of polymodal gating and ion-selectivity switching, we investigated the mechanism by which NAADP and its synthetic functional agonist, TPC2-A1-N, induced Ca release through TPC2 in human cells. Whereas NAADP required the NAADP-binding proteins JPT2 and LSM12 to evoke endogenous calcium ion signals, TPC2-A1-N did not. Residues in TPC2 that bind to PI(3,5)P were required for channel activation by NAADP but not for activation by TPC2-A1-N. The cryptic voltage-sensing region of TPC2 was required for the actions of TPC2-A1-N and PI(3,5)P but not for those of NAADP. These data mechanistically distinguish natural and synthetic agonist action at TPC2 despite convergent effects on Ca permeability and delineate a route for pharmacologically correcting impaired NAADP-evoked Ca signals.
TPC2 是一种与病理生理学相关的溶酶体离子通道,可被磷酸肌醇 PI(3,5)P 直接激活,并通过与通道相关联的辅助蛋白间接被钙动员分子 NAADP 激活。TPC2 在响应这些信号时,在 PI(3,5)P 诱导的、钠离子 (Na) 选择性和 NAADP 诱导的、钙离子 (Ca) 渗透性状态之间切换。为了解决多模态门控和离子选择性切换的分子基础,我们研究了 NAADP 及其合成功能性激动剂 TPC2-A1-N 通过 TPC2 诱导 Ca 释放的机制。虽然 NAADP 需要 NAADP 结合蛋白 JPT2 和 LSM12 来引发内源性钙离子信号,但 TPC2-A1-N 不需要。与 PI(3,5)P 结合的 TPC2 残基对于 NAADP 诱导的通道激活是必需的,但对于 TPC2-A1-N 的激活则不是必需的。TPC2 的隐匿性电压感应区对于 TPC2-A1-N 和 PI(3,5)P 的作用是必需的,但对于 NAADP 的作用则不是必需的。这些数据从机制上区分了 TPC2 天然和合成激动剂的作用,尽管它们对 Ca 通透性有共同的影响,并描绘了一种纠正受损 NAADP 诱导 Ca 信号的药理学途径。