Masataka Kawai et al. demonstrate that phosphate binding is a key determinant of oscillatory work and suggest that it may also compete with ATP for binding to the myosin head. https://t.co/EEsn3bXypm Part of our #Myofilament Special Issue: https://t.co/…
Cross-bridge scheme surrounding the force generation and inorganic phosphate release steps. Kawai and colleagues show phosphate has dual roles in cross-bridge kinetics in rabbit psoas single myofibrils: https://t.co/EEsn3bXypm #Biophysics #Myofilament h…
Phosphate has dual roles in cross-bridge kinetics in rabbit psoas single myofibrils. Masataka Kawai and colleagues demonstrate that phosphate binding is a key determinant of oscillatory work. https://t.co/EEsn3bFX0M #Biophysics #Myofilament https://t.co…
In @JGenPhysiol, Kawai @UIowaACB et al. address the role of inorganic phosphate in muscle cross-bridge kinetics using a subcellular structure called myofibrils. They demonstrate that phosphate binding is a key determinant of oscillatory work. https://t.…