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TRP 通道对多不饱和脂肪酸敏感性的分子基础。

Molecular basis for the sensitivity of TRP channels to polyunsaturated fatty acids.

机构信息

Department of Pharmacology and Experimental Therapy, Institute of Experimental and Clinical Pharmacology and Toxicology, Eberhard Karls University Hospitals and Clinics and Interfaculty Center of Pharmacogenomics and Drug Research (ICePhA), Wilhelmstrasse 56, 72074, Tübingen, Germany.

Experimental and Clinical Research Center (ECRC), a joint cooperation of the Charité University Medicine and Max Delbruck Center for Molecular Medicine in the Helmholtz Association, Lindenberger Weg 80, 13125, Berlin, Germany.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 2018 Aug;391(8):833-846. doi: 10.1007/s00210-018-1507-3. Epub 2018 May 8.

Abstract

Transient receptor potential (TRP) channels represent a superfamily of unselective cation channels that are subdivided into seven subfamilies based on their sequence homology and differences in gating and functional properties. Little is known about the molecular mechanisms of TRP channel regulation, particularly of the "canonical" TRP (TRPC) subfamily and their activation by polyunsaturated fatty acids (PUFAs). Here, we analyzed the structure-function relationship of Drosophila fruit fly TRPC channels. The primary aim was to uncover the molecular basis of PUFA sensitivity of Drosophila TRP-like (TRPL) and TRPgamma channels. Amino acid (aa) sequence alignment of the three Drosophila TRPC channels revealed 50 aa residues highly conserved in PUFA-sensitive TRPL and TRPgamma channels but not in the PUFA-insensitive TRP channel. Substitution of respective aa in TRPL by corresponding aa of TRP identified 18 residues that are necessary for PUFA-mediated activation of TRPL. Most aa positions are located within a stretch comprising transmembrane domains S2-S4, whereas six aa positions have been assigned to the proximal cytosolic C-terminus. Interestingly, residues I465 and S471 are required for activation by 5,8,11,14-eicosatetraynoic acid (ETYA) but not 5,8,11-eicosatriynoic acid (ETI). As proof of concept, we generated a PUFA-sensitive TRP channel by exchanging the corresponding aa from TRPL to TRP. Our study demonstrates a specific aa pattern in the transmembrane domains S2-S4 and the proximal C-terminus essential for TRP channel activation by PUFAs.

摘要

瞬时受体电位 (TRP) 通道代表一个非选择性阳离子通道超家族,根据其序列同源性和门控及功能特性的差异,分为七个亚家族。TRP 通道调节的分子机制知之甚少,特别是“经典”TRP(TRPC)亚家族及其被多不饱和脂肪酸(PUFAs)激活的机制。在这里,我们分析了果蝇 TRPC 通道的结构-功能关系。主要目的是揭示果蝇 TRP 样(TRPL)和 TRPgamma 通道对 PUFAs 敏感的分子基础。三个果蝇 TRPC 通道的氨基酸(aa)序列比对揭示了 50 个 aa 残基在 PUFA 敏感的 TRPL 和 TRPgamma 通道中高度保守,但在 PUFA 不敏感的 TRP 通道中则不保守。用 TRP 的相应 aa 替换 TRPL 中的相应 aa,确定了 18 个残基对于 PUFA 介导的 TRPL 激活是必需的。大多数 aa 位置位于包含跨膜结构域 S2-S4 的一段中,而六个 aa 位置被分配到近端胞质 C 末端。有趣的是,残基 I465 和 S471 对于 5,8,11,14-二十碳四烯酸(ETYA)而不是 5,8,11-二十碳三烯酸(ETI)的激活是必需的。作为概念验证,我们通过将 TRPL 中的相应 aa 交换到 TRP 中,生成了一个对 PUFAs 敏感的 TRP 通道。我们的研究表明,在跨膜结构域 S2-S4 和近端 C 末端存在一个特定的 aa 模式,对于 PUFAs 激活 TRP 通道是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a76/6061713/61ea3fb0f937/210_2018_1507_Fig1_HTML.jpg

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