Leeds Institute of Cardiovascular and Metabolic Medicine, School of Medicine, University of Leeds, Leeds, UK.
J Physiol. 2018 Mar 15;596(6):979-984. doi: 10.1113/JP274396. Epub 2018 Jan 9.
Piezo1 channels are newly discovered ion channels which have come to the fore as players in endothelial biology. They have a key role as sensors of shear stress, a frictional force which arises in vascular biology because of blood flow. Endothelial Piezo1 channels are critical in murine embryonic development, just after the heart starts to beat and drive blood into the nascent endothelial network. In contrast they are not critical at the adult stage but they are important for performance in whole body physical activity where they have a vascular bed-specific effect to cause mesenteric resistance artery vasoconstriction, achieved through opposition to the vasodilatory mechanism of endothelium-derived hyperpolarization. These are our first insights into the relevance of endothelial Piezo1 channels and there is clearly much more to be done to understand the significance and underlying molecular mechanisms. The suggestion that they constitute an exercise sensor by virtue of their shear stress-sensing capability is intriguing and could open the way to better understanding of the molecular basis of the response to exercise and determination of how the health benefits of exercise arise. Enhanced Piezo1 channel activity has been demonstrated in response to the Yoda1 molecule and this suggests the possibility for developing tools which probe and manipulate this aspect of the exercise system. Whether such agents might progress to 'exercise pills' and whether the existence of such pills would be desirable are matters for further work and debate.
Piezo1 通道是新发现的离子通道,作为内皮生物学中的重要角色而备受关注。它们作为切应力(血流引起的摩擦力)传感器具有关键作用。内皮细胞 Piezo1 通道在小鼠胚胎发育中至关重要,此时心脏刚刚开始跳动并将血液泵入微血管网络。相比之下,在成年阶段它们就不那么重要了,但在全身体力活动中它们非常重要,因为它们具有血管床特异性作用,导致肠系膜阻力动脉收缩,这是通过拮抗内皮衍生超极化的血管舒张机制来实现的。这些是我们对内皮细胞 Piezo1 通道相关性的初步认识,显然还有更多的工作要做,以了解其意义和潜在的分子机制。它们通过切应力感应能力构成运动传感器的观点很有趣,这可能为更好地理解运动反应的分子基础以及运动带来健康益处的方式开辟道路。已经证明,Piezo1 通道的活性在 Yoda1 分子的作用下增强,这表明有可能开发出探测和操纵运动系统这一方面的工具。这些药物是否会进展到“运动药丸”,以及是否需要这样的药丸,这些都是进一步研究和讨论的问题。