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人类的瞬时受体电位通道 A1(TRPA1)固有冷热敏感性涉及 N-ARD 结构域之外的独立通道结构。

The human TRPA1 intrinsic cold and heat sensitivity involves separate channel structures beyond the N-ARD domain.

机构信息

Wallenberg Centre for Molecular Medicine, Linköping University, SE-581 83, Linköping, Sweden.

Department of Biomedical and Clinical Sciences (BKV), Faculty of Health Sciences, Linköping University, SE-581 83, Linköping, Sweden.

出版信息

Nat Commun. 2022 Oct 17;13(1):6113. doi: 10.1038/s41467-022-33876-8.

Abstract

TRP channels sense temperatures ranging from noxious cold to noxious heat. Whether specialized TRP thermosensor modules exist and how they control channel pore gating is unknown. We studied purified human TRPA1 (hTRPA1) truncated proteins to gain insight into the temperature gating of hTRPA1. In patch-clamp bilayer recordings, ∆1-688 hTRPA1, without the N-terminal ankyrin repeat domain (N-ARD), was more sensitive to cold and heat, whereas ∆1-854 hTRPA1, also lacking the S1-S4 voltage sensing-like domain (VSLD), gained sensitivity to cold but lost its heat sensitivity. In hTRPA1 intrinsic tryptophan fluorescence studies, cold and heat evoked rearrangement of VSLD and the C-terminus domain distal to the transmembrane pore domain S5-S6 (CTD). In whole-cell electrophysiology experiments, replacement of the CTD located cysteines 1021 and 1025 with alanine modulated hTRPA1 cold responses. It is proposed that hTRPA1 CTD harbors cold and heat sensitive domains allosterically coupled to the S5-S6 pore region and the VSLD, respectively.

摘要

TRP 通道可感知从有害冷到有害热的温度。是否存在专门的 TRP 热传感器模块以及它们如何控制通道孔门控尚不清楚。我们研究了纯化的人 TRPA1(hTRPA1)截断蛋白,以深入了解 hTRPA1 的温度门控。在膜片钳双层记录中,没有 N 端锚重复域(N-ARD)的 ∆1-688 hTRPA1 对冷和热更敏感,而也缺乏 S1-S4 电压感应样域(VSLD)的 ∆1-854 hTRPA1 对冷敏感,但失去了对热的敏感性。在 hTRPA1 固有色氨酸荧光研究中,冷和热诱导电压感应样域和跨膜孔域 S5-S6(CTD)远端的 C 末端域的重排。在全细胞电生理学实验中,用丙氨酸替换位于 CTD 的半胱氨酸 1021 和 1025 可调节 hTRPA1 的冷反应。据推测,hTRPA1 CTD 具有冷敏和热敏结构域,它们分别与 S5-S6 孔区和 VSLD 变构偶联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b30/9576766/370311d50c66/41467_2022_33876_Fig1_HTML.jpg

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