Yang Fan, Xu Lizhen, Lee Bo Hyun, Xiao Xian, Yarov-Yarovoy Vladimir, Zheng Jie
Department of Biophysics, and Kidney Disease Center of the First Affiliated Hospital Zhejiang University School of Medicine 866 Yuhangtang Road Hangzhou Zhejiang 310058 China.
Department of Physiology and Membrane Biology University of California, Davis One Shields Avenue Davis CA 95616 USA.
Adv Sci (Weinh). 2020 Sep 21;7(20):2000575. doi: 10.1002/advs.202000575. eCollection 2020 Oct.
While the capsaicin receptor transient receptor potential vanilloid 1 (TRPV1) channel is a polymodal nociceptor for heat, capsaicin, and protons, the channel's responses to each of these stimuli are profoundly regulated by membrane potential, damping or even prohibiting its response at negative voltages and amplifying its response at positive voltages. Therefore, voltage sensitivity of TRPV1 is anticipated to play an important role in shaping pain responses. How voltage regulates TRPV1 activation remains unknown. Here, it is shown that voltage sensitivity does not originate from the S4 segment like classic voltage-gated ion channels; instead, outer pore acidic residues directly partake in voltage-sensitive activation, with their negative charges collectively constituting the observed gating charges. Outer pore gating-charge movement is titratable by extracellular pH and is allosterically coupled to channel activation, likely by influencing the upper gate in the ion selectivity filter. Elucidating this unorthodox voltage-gating process provides a mechanistic foundation for understanding TRPV1 polymodal gating and opens the door to novel approaches regulating channel activity for pain management.
虽然辣椒素受体瞬时受体电位香草酸亚型1(TRPV1)通道是一种对热、辣椒素和质子的多模式伤害感受器,但该通道对这些刺激的反应受到膜电位的深刻调节,在负电压下会抑制甚至禁止其反应,而在正电压下会放大其反应。因此,TRPV1的电压敏感性预计在塑造疼痛反应中起重要作用。电压如何调节TRPV1的激活仍然未知。在这里,研究表明,电压敏感性不像经典电压门控离子通道那样起源于S4段;相反,外孔酸性残基直接参与电压敏感激活,它们的负电荷共同构成了观察到的门控电荷。外孔门控电荷的移动可被细胞外pH滴定,并与通道激活变构偶联,可能是通过影响离子选择性过滤器中的上部门控。阐明这种非正统的电压门控过程为理解TRPV1的多模式门控提供了机制基础,并为调节通道活性以进行疼痛管理的新方法打开了大门。