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动物毒素揭示 TRPV1 激活机制。

Animal Toxins Providing Insights into TRPV1 Activation Mechanism.

机构信息

The Institute for Drug Research (IDR), School of Pharmacy, Faculty of Medicine, The Hebrew University of Jerusalem, Jerusalem 9112001, Israel.

出版信息

Toxins (Basel). 2017 Oct 16;9(10):326. doi: 10.3390/toxins9100326.

Abstract

Beyond providing evolutionary advantages, venoms offer unique research tools, as they were developed to target functionally important proteins and pathways. As a key pain receptor in the nociceptive pathway, transient receptor potential vanilloid 1 (TRPV1) of the TRP superfamily has been shown to be a target for several toxins, as a way of producing pain to deter predators. Importantly, TRPV1 is involved in thermoregulation, inflammation, and acute nociception. As such, toxins provide tools to understand TRPV1 activation and modulation, a critical step in advancing pain research and the development of novel analgesics. Indeed, the phytotoxin capsaicin, which is the spicy chemical in chili peppers, was invaluable in the original cloning and characterization of TRPV1. The unique properties of each subsequently characterized toxin have continued to advance our understanding of functional, structural, and biophysical characteristics of TRPV1. By building on previous reviews, this work aims to provide a comprehensive summary of the advancements made in TRPV1 research in recent years by employing animal toxins, in particular DkTx, RhTx, BmP01, toxins, APHCs and HCRG21. We examine each toxin's functional aspects, behavioral effects, and structural features, all of which have contributed to our current knowledge of TRPV1. We additionally discuss the key features of TRPV1's outer pore domain, which proves to be the target of the currently discussed toxins.

摘要

除了提供进化优势外,毒液还提供了独特的研究工具,因为它们是为靶向功能重要的蛋白质和途径而开发的。作为伤害感受途径中的关键疼痛受体,瞬时受体电位香草酸 1(TRPV1)属于 TRP 超家族,已被证明是几种毒素的靶标,其作用是产生疼痛以阻止捕食者。重要的是,TRPV1 参与体温调节、炎症和急性疼痛。因此,毒素为了解 TRPV1 的激活和调节提供了工具,这是推进疼痛研究和新型镇痛药开发的关键步骤。事实上,植物毒素辣椒素是辣椒中产生辣味的化学物质,它在 TRPV1 的最初克隆和表征中发挥了不可或缺的作用。随后表征的每种毒素的独特特性继续加深了我们对 TRPV1 的功能、结构和生物物理特性的理解。通过借鉴以前的综述,这项工作旨在通过使用动物毒素,特别是 DkTx、RhTx、BmP01、ω-CTX、APHCs 和 HCRG21,全面总结近年来 TRPV1 研究的进展。我们检查了每种毒素的功能方面、行为效应和结构特征,所有这些都有助于我们目前对 TRPV1 的了解。我们还讨论了 TRPV1 外孔域的关键特征,该特征被证明是目前讨论的毒素的靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3856/5666373/c516c2cade90/toxins-09-00326-g001.jpg

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