Sandbox Reserved 1653: Difference between revisions

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"Each of these blades, deflecting at an angle of 100° perpendicular to the membrane, contains 6 tandems transmembranar helical unites (THUs) constitute  
"Each of these blades, deflecting at an angle of 100° perpendicular to the membrane, contains 6 tandems transmembranar helical unites (THUs) constitute  
of 4 transmembrane domains" <ref name= "Article six"> DOI 10.1038/nature25743</ref> <ref name="Alexandra"/>. "They are not planar: instead, they lie on a spherically curved surface with the membrane bulging into the cytoplasm".<ref name= "Piezo Senses Tension "> DOI 10.1016/j.cub.2018.02.078</ref>
of 4 transmembrane domains" <ref name= "Article six"> DOI 10.1038/nature25743</ref> <ref name="Alexandra"/>. "They are not planar: instead, they lie on a spherically curved surface with the membrane bulging into the cytoplasm".<ref name= "Piezo Senses Tension "> DOI 10.1016/j.cub.2018.02.078</ref>
These flexibles blades are inside the membrane and force the membrane to curve. That why, they are considered as mechanotransduction modules, force sensors and transducers to gate the central pore. "These 3 blades propeller architecture is mechanically interesting because 3 blades are the minimum  
These flexibles blades are inside the membrane and force the membrane to curve. That is why, they are considered as mechanotransduction modules, force sensors and transducers to gate the central pore. "These 3 blades propeller architecture is mechanically interesting because 3 blades are the minimum  
for omnidirectional sensitivity" <ref name="Piezo Senses Tension "/> <ref> DOI 10.7554/eLife.33660 </ref>
for omnidirectional sensitivity" <ref name="Piezo Senses Tension "/> <ref> DOI 10.7554/eLife.33660 </ref>



Revision as of 10:21, 10 January 2021

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