2020
DOI: 10.1101/2020.09.10.292169
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Switch-1 Instability at the Active Site Decouples ATP Hydrolysis from Force Generation in Myosin II

Abstract: Myosin active site elements (i.e. switch-1) bind both ATP and a divalent metal to coordinate ATP hydrolysis. ATP hydrolysis at the active site is linked via allosteric communication to the actin polymer binding site and lever arm movement, thus coupling the free energy of ATP hydrolysis to force generation. How active site motifs are functionally linked to actin binding and the power stroke is still poorly understood. We hypothesize that destabilizing switch-1 movement at the active site will negatively affect… Show more

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