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==='''The different forces perceived by Piezo'''===
==='''The different forces perceived by Piezo'''===


Piezo 1 is a mechanosensitive channel which means, like most cells, it can sense external mechanical forces such as fluid flow-induced shear stress,  
Piezo 1 is a mechanosensitive channel which means, it can sense external mechanical forces such as fluid flow-induced shear stress,  
osmotic stress, and pressure-induced membrane stretch [1]. Moreover, “studies have demonstrated wide expression of the Piezo1 channel that enables many different types of cells to sense a diversity of “outside-in” mechanical forces, including indentation, membrane stretch, shear stress, osmotic stress, ultrasound, and compression”. Since piezo 1 channel could also be activated by traction forces, there are two  different mechanisms that have been proposed
osmotic stress, and pressure-induced membrane stretch [1]. Moreover, “studies have demonstrated wide expression of the Piezo1 channel that enables many different types of cells to sense a diversity of “outside-in” mechanical forces, including indentation, membrane stretch, shear stress, osmotic stress, ultrasound, and compression”. Since piezo 1 channel could also be activated by traction forces, there are two  different mechanisms that have been proposed to explain  the mechanical activation of piezo 1 channel. These mechanisms are called “force-from-lipids” and “force-from-filaments”. [http://www.example.com link title]
to explain  the mechanical activation of piezo 1 channel. These mechanisms are called “force-from-lipids” and “force-from-filaments”.  


For the “force-from-lipids” mechanism, membrane tension is induced by mechanical forces. this membrane tension leads to a reorganization of lipids within  
For the “force-from-lipids” mechanism, membrane tension is induced by mechanical forces. This membrane tension leads to a reorganization of lipids within and surrounding the channel proteins. This reorganization of lipids results into membrane lipid-channel protein interactions that induce the channel to open. We can note that a recent study (Lin et al., 2019) gave support to this mechanism.  
and surrounding the channel proteins. This reorganization of lipids leads to membrane lipid-channel protein interactions that induce the channel to open.  
A recent study (Lin et al., 2019) gave support to this mechanism.  


“The “force-from-filaments” mechanism proposes that the interactions between the channel and extracellular matrix or intracellular cytoskeletal proteins provoke conformational changes leading to the channel opening.”[1]
The “force-from-filaments” mechanism proposes that conformational changes occur thanks to intercations between the channel and extracellular matrix or intracellular cytoskeletal proteins resulting in the channel opening[1].





Revision as of 20:40, 7 January 2021

Piezo 1

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References