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The myosin converter domain modulates muscle performance
Authors:Swank Douglas M  Knowles Aileen F  Suggs Jennifer A  Sarsoza Floyd  Lee Annie  Maughan David W  Bernstein Sanford I
Institution:Department of Biology, Molecular Biology Institute, and the Heart Institute, San Diego State University, San Diego, California 92182-4614, USA. dswank@sciences.sdsu.edu
Abstract:Myosin is the molecular motor that powers muscle contraction as a result of conformational changes during its mechanochemical cycle. We demonstrate that the converter, a compact structural domain that differs in sequence between Drosophila melanogaster myosin isoforms, dramatically influences the kinetic properties of myosin and muscle fibres. Transgenic replacement of the converter in the fast indirect flight muscle with the converter from an embryonic muscle slowed muscle kinetics, forcing a compensatory reduction in wing beat frequency to sustain flight. Conversely, replacing the embryonic converter with the flight muscle converter sped up muscle kinetics and increased maximum power twofold, compared to flight muscles expressing the embryonic myosin isoform. The substitutions also dramatically influenced in vitro actin sliding velocity, suggesting that the converter modulates a rate-limiting step preceding cross-bridge detachment. Our integrative analysis demonstrates that isoform-specific differences in the myosin converter allow different muscle types to meet their specific locomotion demands.
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