Division of Cell Signaling, National Institute for Physiological Sciences, National Institutes of Natural Sciences, Okazaki, Japan.
Thermal Biology Group, Exploratory Research Center on Life and Living Systems, National Institutes of Natural Sciences, Okazaki, Japan.
Bioessays. 2024 Jul;46(7):e2400047. doi: 10.1002/bies.202400047. Epub 2024 May 20.
Recent insights reveal the significant role of TRPV3 in warmth sensation. A novel finding elucidated how thermosensation is affected by TRPV3 membrane abundance that is modulated by the transmembrane protein TMEM79. TRPV3 is a warmth-sensitive ion channel predominantly expressed in epithelial cells, particularly skin keratinocytes. Multiple studies investigated the roles of TRPV3 in cutaneous physiology and pathophysiology. TRPV3 activation by innocuous warm temperatures in keratinocytes highlights its significance in temperature sensation, but whether TRPV3 directly contributes to warmth sensations in vivo remains controversial. This review explores the electrophysiological and structural properties of TRPV3 and how modulators affect its intricate regulatory mechanisms. Moreover, we discuss the multifaceted involvement of TRPV3 in skin physiology and pathology, including barrier formation, hair growth, inflammation, and itching. Finally, we examine the potential of TRPV3 as a therapeutic target for skin diseases and highlight its diverse role in maintaining skin homeostasis.
近期的研究揭示了 TRPV3 在温热感觉中的重要作用。一项新的研究阐明了热感觉如何受到 TRPV3 膜丰度的影响,而 TRPV3 膜丰度受跨膜蛋白 TMEM79 调节。TRPV3 是一种主要在上皮细胞(尤其是皮肤角质形成细胞)中表达的温敏离子通道。多项研究调查了 TRPV3 在皮肤生理学和病理生理学中的作用。TRPV3 在角质形成细胞中被无害的温暖温度激活,突出了其在温度感觉中的重要性,但 TRPV3 是否直接参与体内的温热感觉仍存在争议。这篇综述探讨了 TRPV3 的电生理和结构特性,以及调节剂如何影响其复杂的调节机制。此外,我们还讨论了 TRPV3 在皮肤生理学和病理学中的多方面作用,包括屏障形成、毛发生长、炎症和瘙痒。最后,我们研究了 TRPV3 作为皮肤病治疗靶点的潜力,并强调了其在维持皮肤内稳态中的多样化作用。