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TRPA1 的激活计量比和孔道结构研究——通道串联体分析

Activation Stoichiometry and Pore Architecture of TRPA1 Probed with Channel Concatemers.

机构信息

Department of Biological Sciences, University of Southern California, Los Angeles, CA, 90089, USA.

Department of Physiology, University of California, San Francisco, CA, 94158, USA.

出版信息

Sci Rep. 2018 Nov 20;8(1):17104. doi: 10.1038/s41598-018-35435-y.

Abstract

The nociceptor ion channel TRPA1 detects a wide range of hazardous chemicals, including reactive electrophiles such as cinnamaldehyde, which gate the channel allowing Na and Ca entry. TRPA1 assembles as a tetramer, with a central pore within which an aspartate residue (D918) determines Ca permeability. Here, we report that introduction of histidine at this position, D918H, makes TRPA1 channels sensitive to block by nanomolar concentration of Zn and can be used to functionally tag subunits in concatemers. Concatemers with increasing numbers of D918H subunits display increasing sensitivity to Zn inhibition, indicating that the four side chains at position 918 of the tetramer directly coordinate Zn and other permeating divalent cations. In the published structure of TRPA1, this requires a rearrangement of the pore region which may represent the true open state of the channel. Concatemeric channels containing subunits mutated to be insensitive to reactive electrophiles (C622S) could be activated by cinnamaldehyde when as few as two subunits contained intact ligand binding sites. Activation upon liganding of just two of the four possible subunits may represent an optimal strategy to rapidly and reliably detect noxious chemicals.

摘要

伤害感受器离子通道 TRPA1 可检测到多种有害化学物质,包括肉桂醛等反应性亲电试剂,这些物质可打开通道,允许 Na 和 Ca 进入。TRPA1 作为四聚体组装,其中央孔内有一个天冬氨酸残基 (D918),决定了 Ca 的通透性。在这里,我们报告说,在该位置引入组氨酸,即 D918H,使 TRPA1 通道对纳摩尔浓度的 Zn 敏感,并可用于功能标记串联体中的亚基。带有越来越多的 D918H 亚基的串联体对 Zn 抑制的敏感性增加,表明四聚体中位置 918 的四个侧链直接配位 Zn 和其他渗透的二价阳离子。在已发表的 TRPA1 结构中,这需要对孔区进行重新排列,这可能代表通道的真实开放状态。当仅包含两个完整配体结合位点的亚基时,包含对反应性亲电试剂不敏感的突变体的亚基(C622S)的串联体通道可以被肉桂醛激活。在配体结合的情况下,四个可能的亚基中的仅仅两个被激活,可能代表了快速可靠地检测有害化学物质的最佳策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc2f/6244152/c58248fc6d5a/41598_2018_35435_Fig1_HTML.jpg

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