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综述:TRPV4 受体介导热敏通道在伤害感受和炎症通路中的作用。

Mini-review: Dissecting receptor-mediated stimulation of TRPV4 in nociceptive and inflammatory pathways.

机构信息

Monash Institute of Pharmaceutical Sciences, Monash University, 381 Royal Parade, Parkville, Victoria 3052, Australia.

Monash Institute of Pharmaceutical Sciences, Monash University, 381 Royal Parade, Parkville, Victoria 3052, Australia.

出版信息

Neurosci Lett. 2022 Jan 23;770:136377. doi: 10.1016/j.neulet.2021.136377. Epub 2021 Nov 29.

Abstract

Transient Receptor Potential Vanilloid 4 (TRPV4) is a polymodal, non-selective cation channel that detects thermal, mechanical, and environmental cues and contributes to a range of diverse physiological processes. The effects of chronic TRPV4 stimulation and gain-of-function genetic mutations suggest that TRPV4 may also be a valuable therapeutic target for pathophysiological events including neurogenic inflammation, peripheral neuropathies, and impaired wound healing. There has been significant interest in defining how and where TRPV4 may promote inflammation and pain. Endogenous stimuli such as osmotic stress and lipid binding are established TRPV4 activators. The TRP channel family is also well-known to be controlled by 'receptor-operated' pathways. For example, G protein-coupled receptors (GPCRs) expressed by primary afferent neurons or other cells in inflammatory pathways utilize TRPV4 as an effector protein to amplify nociceptive and inflammatory signaling. Contributing to disorders including arthritis, neuropathies, and pulmonary edema, GPCRs such as the protease-activated receptor PAR2 mediate activation of kinase signaling cascades to increase TRPV4 phosphorylation, resulting in sensitization and enhanced neuronal excitability. Phospholipase activity also leads to production of polyunsaturated fatty acid lipid mediators that directly activate TRPV4. Consistent with the contribution of TRPV4 to disease, pharmacological inhibition or genetic ablation of TRPV4 can diminish receptor-mediated inflammatory events. This review outlines how receptor-mediated signaling is a major endogenous driver of TRPV4 gating and discusses key signaling pathways and emerging TRPV4 modulators such as the mechanosensitive Piezo1 ion channel. A collective understanding of how endogenous stimuli can influence TRPV4 function is critical for future therapeutic endeavors to modulate this channel.

摘要

瞬时受体电位香草酸 4 型(TRPV4)是一种多模式、非选择性阳离子通道,可检测热、机械和环境线索,并有助于多种生理过程。慢性 TRPV4 刺激和功能获得性基因突变的影响表明,TRPV4 也可能是神经炎症、周围神经病变和伤口愈合受损等病理生理事件的有价值的治疗靶点。人们对确定 TRPV4 如何以及在何处促进炎症和疼痛产生了浓厚的兴趣。内源性刺激,如渗透压应激和脂质结合,是 TRPV4 的已知激活剂。TRP 通道家族也以“受体操作”途径控制而闻名。例如,初级传入神经元或炎症途径中其他细胞表达的 G 蛋白偶联受体(GPCR)将 TRPV4 用作效应蛋白,以放大伤害性和炎症信号。参与关节炎、神经病变和肺水肿等疾病的蛋白酶激活受体 PAR2 等 GPCR 介导激酶信号级联的激活,增加 TRPV4 磷酸化,导致敏化和增强神经元兴奋性。磷脂酶活性也导致直接激活 TRPV4 的多不饱和脂肪酸脂质介质的产生。与 TRPV4 对疾病的贡献一致,TRPV4 的药理学抑制或基因缺失可以减少受体介导的炎症事件。这篇综述概述了受体介导的信号转导如何成为 TRPV4 门控的主要内源性驱动因素,并讨论了关键的信号通路和新兴的 TRPV4 调节剂,如机械敏感的 Piezo1 离子通道。对内源性刺激如何影响 TRPV4 功能的综合理解,对于未来调节该通道的治疗努力至关重要。

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