Physiology and Biophysics, SUNY at Buffalo, Buffalo, NY, USA.
Channels (Austin). 2012 Jul-Aug;6(4):214-9. doi: 10.4161/chan.21050. Epub 2012 Jul 1.
Piezo ion channels have been found to be essential for mechanical responses in cells. These channels were first shown to exist in Neuro2A cells, and the gene was identified by siRNAs that diminished the mechanical response. Piezo channels are approximately 2500 amino acids long, have between 24-32 transmembrane regions, and appear to assemble into tetramers and require no other proteins for activity. They have a reversal potential around 0 mV and show voltage dependent inactivation. The channel is constitutively active in liposomes, indicating that no cytoskeletal elements are required. Heterologous expression of the Piezo protein can create mechanical sensitivity in otherwise insensitive cells. Piezo1 currents in outside-out patches were blocked by the extracellular MSC inhibitor peptide GsMTx4. Both enantiomeric forms of GsMTx4 inhibited channel activity in a manner similar to endogenous mechanical channels. Piezo1 can adopt a tonic (non-inactivating) form with repeated stimulation. The transition to the non-inactivating form generally occurs in large groups of channels, indicating that the channels exist in domains, and once the domain is compromised, the members simultaneously adopt new properties. Piezo proteins are associated with physiological responses in cells, such as the reaction to noxious stimulus of Drosophila larvae. Recent work measuring cell crowding, shows that Piezo1 is essential for the removal of extra cells without apoptosis. Piezo1 mutations have also been linked to the pathological response of red blood cells in a genetic disease called Xerocytosis. These finding suggest that Piezo1 is a key player in cells' responses to mechanical stimuli.
Piezo 离子通道对于细胞的机械响应至关重要。这些通道最初在 Neuro2A 细胞中被发现,并且通过使机械响应减弱的 siRNA 鉴定了该基因。Piezo 通道大约有 2500 个氨基酸长,有 24-32 个跨膜区域,似乎组装成四聚体,并且不需要其他蛋白质来发挥活性。它们的反转电位约为 0 mV,并表现出电压依赖性失活。通道在脂质体中是组成性激活的,这表明不需要细胞骨架元件。Piezo 蛋白的异源表达可以使原本不敏感的细胞产生机械敏感性。在外面向外片上的 Piezo1 电流被细胞外 MSC 抑制剂肽 GsMTx4 阻断。GsMTx4 的两种对映体形式以类似于内源性机械通道的方式抑制通道活性。Piezo1 可以采用连续刺激的紧张(非失活)形式。向非失活形式的转变通常发生在大量通道中,这表明通道存在于域中,并且一旦域受损,成员就会同时采用新的特性。Piezo 蛋白与细胞的生理反应有关,例如对果蝇幼虫有害刺激的反应。最近测量细胞拥挤的工作表明,Piezo1 对于在没有细胞凋亡的情况下去除多余细胞是必需的。Piezo1 突变也与一种称为 Xerocytosis 的遗传性疾病中红细胞的病理反应有关。这些发现表明 Piezo1 是细胞对机械刺激反应的关键参与者。