Volkers Linda, Mechioukhi Yasmine, Coste Bertrand
Ion Channels and Sensory Transduction Group, Aix Marseille Université, CNRS, CRN2M-UMR 7286, 13344, Marseille, France.
Pflugers Arch. 2015 Jan;467(1):95-9. doi: 10.1007/s00424-014-1578-z. Epub 2014 Jul 20.
Mechanotransduction is the conversion of mechanical stimuli into biological signals. It is involved in the modulation of diverse cellular functions such as migration, proliferation, differentiation, and apoptosis as well as in the detection of sensory stimuli such as air vibration and mechanical contact. Therefore, mechanotransduction is crucial for organ development and homeostasis and plays a direct role in hearing, touch, proprioception, and pain. Multiple molecular players involved in mechanotransduction have been identified in the past, among them ion channels directly activated by cell membrane deformation. Most of these channels have well-established roles in lower organisms but are not conserved in mammals or fail to encode mechanically activated channels in mammals due to non-conservation of mechanotransduction property. A family of mechanically activated channels that counts only two members in human, piezo1 and 2, has emerged recently. Given the lack of valid mechanically activated channel candidates in mammals in the past decades, particular attention is given to piezo channels and their potential roles in various biological functions. This review summarizes our current knowledge on these ion channels.
机械转导是将机械刺激转化为生物信号的过程。它参与调节多种细胞功能,如迁移、增殖、分化和凋亡,以及检测诸如空气振动和机械接触等感觉刺激。因此,机械转导对于器官发育和体内平衡至关重要,并在听觉、触觉、本体感觉和疼痛中发挥直接作用。过去已经鉴定出多个参与机械转导的分子,其中包括直接由细胞膜变形激活的离子通道。这些通道中的大多数在低等生物中具有明确的作用,但在哺乳动物中不保守,或者由于机械转导特性的不保守而无法在哺乳动物中编码机械激活通道。最近出现了一个在人类中仅包含两个成员的机械激活通道家族,即Piezo1和Piezo2。鉴于在过去几十年中哺乳动物中缺乏有效的机械激活通道候选物,Piezo通道及其在各种生物学功能中的潜在作用受到了特别关注。本综述总结了我们目前对这些离子通道的认识。