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分析肽 MS9a-1 增强 TRPA1 通道的结构决定因素。

Analysis of Structural Determinants of Peptide MS 9a-1 Essential for Potentiating of TRPA1 Channel.

机构信息

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, ul. Miklukho-Maklaya 16/10, 117997 Moscow, Russia.

Institute of Molecular Medicine, Sechenov First Moscow State Medical University, Trubetskaya Str. 8, Bld. 2, 119991 Moscow, Russia.

出版信息

Mar Drugs. 2022 Jul 21;20(7):465. doi: 10.3390/md20070465.

Abstract

The TRPA1 channel is involved in a variety of physiological processes and its activation leads to pain perception and the development of inflammation. Peptide Ms 9a-1 from sea anemone is a positive modulator of TRPA1 and causes significant analgesic and anti-inflammatory effects by desensitization of TRPA1-expressing sensory neurons. For structural and functional analysis of Ms 9a-1, we produced four peptides-Ms 9a-1 without C-terminal domain (abbreviated as N-Ms), short C-terminal domain Ms 9a-1 alone (C-Ms), and two homologous peptides (Ms 9a-2 and Ms 9a-3). All tested peptides possessed a reduced potentiating effect on TRPA1 compared to Ms 9a-1 in vitro. None of the peptides reproduced analgesic and anti-inflammatory properties of Ms 9a-1 in vivo. Peptides N-Ms and C-Ms were able to reduce pain induced by AITC (selective TRPA1 agonist) but did not decrease AITC-induced paw edema development. Fragments of Ms 9a-1 did not effectively reverse CFA-induced thermal hyperalgesia and paw edema. Ms 9a-2 and Ms 9a-3 possessed significant effects and anti-inflammatory properties in some doses, but their unexpected efficacy and bell-shape dose-responses support the hypothesis of other targets involved in their effects in vivo. Therefore, activity comparison of Ms 9a-1 fragments and homologues peptides revealed structural determinants important for TRPA1 modulation, as well as analgesic and anti-inflammatory properties of Ms9a-1.

摘要

瞬时受体电位通道 A1(TRPA1)参与多种生理过程,其激活可导致疼痛感知和炎症的发展。来自海葵的肽 Ms 9a-1 是 TRPA1 的正调节剂,通过使表达 TRPA1 的感觉神经元脱敏,可产生显著的镇痛和抗炎作用。为了对 Ms 9a-1 进行结构和功能分析,我们生成了四个肽-Ms 9a-1 无 C 端结构域(缩写为 N-Ms)、单独的短 C 端结构域 Ms 9a-1(C-Ms),以及两个同源肽(Ms 9a-2 和 Ms 9a-3)。与 Ms 9a-1 相比,所有测试的肽在体外对 TRPA1 的增强作用均降低。在体内,没有一种肽能够重现 Ms 9a-1 的镇痛和抗炎特性。肽 N-Ms 和 C-Ms 能够减轻 AITC(选择性 TRPA1 激动剂)引起的疼痛,但不能减少 AITC 引起的爪肿胀发展。Ms 9a-1 的片段不能有效地逆转 CFA 引起的热痛觉过敏和爪肿胀。Ms 9a-2 和 Ms 9a-3 在某些剂量下具有显著的效果和抗炎特性,但它们意外的疗效和钟形剂量反应支持了其在体内作用涉及其他靶点的假说。因此,Ms 9a-1 片段和同源肽的活性比较揭示了对 TRPA1 调节具有重要意义的结构决定因素,以及 Ms9a-1 的镇痛和抗炎特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2072/9320628/c49c1986c4ac/marinedrugs-20-00465-g001.jpg

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