An exceptionally fast actomyosin reaction powers insect flight muscle
- 14 November 2006
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (46) , 17543-17547
- https://doi.org/10.1073/pnas.0604972103
Abstract
Insects, as a group, have been remarkably successful in adapting to a great range of physical and biological environments, in large part because of their ability to fly. The evolution of flight in small insects was accompanied by striking adaptations of the thoracic musculature that enabled very high wing beat frequencies. At the cellular and protein filament level, a stretch activation mechanism evolved that allowed high-oscillatory work to be achieved at very high frequencies as contraction and nerve stimulus became asynchronous. At the molecular level, critical adaptations occurred within the motor protein myosin II, because its elementary interactions with actin set the speed of sarcomere contraction. Here, we show that the key myosin enzymatic adaptations required for powering the very fast flight muscles in the fruit fly Drosophila melanogaster include the highest measured detachment rate of myosin from actin (forward rate constant, 3,698 s(-1)), an exceptionally weak affinity of MgATP for myosin (association constant, 0.2 mM(-1)), and a unique rate-limiting step in the cross-bridge cycle at the point of inorganic phosphate release. The latter adaptations are constraints imposed by the overriding requirement for exceptionally fast release of the hydrolytic product MgADP. Otherwise, as in Drosophila embryonic muscle and other slow muscle types, a step associated with MgADP release limits muscle contraction speed by delaying the detachment of myosin from actin.Keywords
This publication has 32 references indexed in Scilit:
- What Limits the Velocity of Fast-skeletal Muscle Contraction in Mammals?Journal of Molecular Biology, 2006
- An Alternative Domain Near the Nucleotide-binding Site of Drosophila Muscle Myosin Affects ATPase KineticsJournal of Molecular Biology, 2005
- Molecular dynamics of cyclically contracting insect flight muscle in vivoNature, 2005
- The myosin motor in muscle generates a smaller and slower working stroke at higher loadNature, 2004
- Variable N-terminal Regions of Muscle Myosin Heavy Chain Modulate ATPase Rate and Actin Sliding VelocityPublished by Elsevier ,2003
- The myosin converter domain modulates muscle performanceNature Cell Biology, 2002
- Alternative Exon-encoded Regions of Drosophila Myosin Heavy Chain Modulate ATPase Rates and Actin Sliding VelocityJournal of Biological Chemistry, 2001
- Phosphate Release and Force Generation in Skeletal Muscle FibersScience, 1985
- Exchange between inorganic phosphate and adenosine 5'-triphosphate in the medium by actomyosin subfragment 1Biochemistry, 1980
- Oscillatory contraction of insect fibrillar muscle after glycerol extractionProceedings of the Royal Society of London. B. Biological Sciences, 1966