Group of Ionic Mechanisms of Cell Signalling, Department of Intracellular Signalling and Transport, Institute of Cytology, Russian Academy of Sciences, St. Petersburg, Russia.
J Cell Physiol. 2023 May;238(5):918-930. doi: 10.1002/jcp.31001. Epub 2023 Mar 22.
PIEZO1 is a mechanosensitive channel widely presented in eukaryotic organisms. Although the PIEZO family was discovered in 2010, main questions related to the molecular structure as well as to specific activation mechanisms and regulating pathways remain open. Two hypotheses of PIEZO1 gating were formulated: the first, as a dominant hypothesis, through the plasma membrane (force-from-lipids) and the second, via the participation of the cytoskeleton and the components of the extracellular matrix (ECM) (force-from-filaments). Many researchers provide convincing evidence for both hypotheses. It was demonstrated that PIEZO1 has a propeller-like shape forming a membrane curvature within the lipid bilayer. That suggests the participation of lipids in channel modulation, and many studies demonstrate the critical role of lipids and compounds that modify the lipid bilayer in the regulation of PIEZO1 properties. At the same time, the components of ECM and cortical cytoskeleton can be affected by the membrane curvature and thus have an impact on PIEZO1 properties. In living cells, PIEZO1 properties are reported to be critically dependent on channel microenvironment that is on combinatorial influence of plasma membrane, cytoskeleton and ECM. Thus, it is necessary to understand which factors can affect PIEZO1 and consider them when interpreting the role of PIEZO1 in various physiological processes. This review summarizes the current knowledge about regulation of Piezo1 by lipids and the components of ECM and cytoskeleton.
PIEZO1 是一种广泛存在于真核生物中的机械敏感通道。尽管 PIEZO 家族于 2010 年被发现,但与分子结构以及特定激活机制和调节途径相关的主要问题仍然存在。PIEZO1 门控有两种假说:第一种是通过质膜(力来自脂质)的主要假说,第二种是通过细胞骨架和细胞外基质(ECM)的成分(力来自纤维)的假说。许多研究人员为这两种假说提供了令人信服的证据。已经证明 PIEZO1 具有类似于推进器的形状,在脂质双层内形成膜曲率。这表明脂质参与通道调节,许多研究表明脂质和修饰脂质双层的化合物在调节 PIEZO1 特性方面起着关键作用。同时,ECM 的成分和皮质细胞骨架可以受到膜曲率的影响,从而对 PIEZO1 特性产生影响。在活细胞中,据报道 PIEZO1 的特性严重依赖于通道微环境,即质膜、细胞骨架和 ECM 的组合影响。因此,有必要了解哪些因素可以影响 PIEZO1,并在解释 PIEZO1 在各种生理过程中的作用时考虑这些因素。本综述总结了目前关于脂质和 ECM 及细胞骨架成分对 Piezo1 调节的认识。