Indirect coupling of phosphate release to de novo tension generation during muscle contraction.
- 7 November 1995
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 92 (23) , 10482-10486
- https://doi.org/10.1073/pnas.92.23.10482
Abstract
A key question in muscle contraction is how tension generation is coupled to the chemistry of the actomyosin ATPase. Biochemical and mechanochemical experiments link tension generation to a change in structure associated with phosphate release. Length-jump and temperature-jump experiments, on the other hand, implicate phase 2slow, a significantly faster, markedly strain-sensitive kinetic process in tension generation. We use a laser temperature jump to probe the kinetics and mechanism of tension generation in skinned rabbit psoas fibers--an appropriate method since both phosphate release and phase 2slow are readily perturbed by temperature. Kinetics characteristic of the structural change associated with phosphate release are observed only when phosphate is added to fibers. When present, it causes a reduction in fiber tension; otherwise, no force is generated when it is perturbed. We therefore exclude this step from tension generation. The kinetics of de novo tension generation by the temperature-jump equivalent of phase 2slow appear unaffected by phosphate binding. We therefore propose that phosphate release is indirectly coupled to de novo tension generation via a steady-state flux through an irreversible step. We conclude that tension generation occurs in the absence of chemical change as the result of an entropy-driven transition between strongly bound crossbridges in the actomyosin-ADP state. The mechanism resembles the operation of a clock, with phosphate release providing the energy to tension the spring, and the irreversible step functions as the escapement mechanism, which is followed in turn by tension generation as the movement of the hands.Keywords
This publication has 33 references indexed in Scilit:
- Force generation and temperature-jump and length-jump tension transients in muscle fibersBiophysical Journal, 1995
- Tension transients initiated by photogeneration of MgADP in skinned skeletal muscle fibers.The Journal of general physiology, 1993
- Force and stiffness in glycerinated rabbit psoas fibers. Effects of calcium and elevated phosphate.The Journal of general physiology, 1992
- Rapid regeneration of the actin-myosin power stroke in contracting muscleNature, 1992
- Two step mechanism of phosphate release and the mechanism of force generation in chemically skinned fibers of rabbit psoas muscleBiophysical Journal, 1991
- Caged Compounds and Striated Muscle ContractionAnnual Review of Physiology, 1990
- Kinetics of the Actomyosin ATPase in Muscle FibersAnnual Review of Physiology, 1987
- RELATIONSHIPS BETWEEN CHEMICAL AND MECHANICAL EVENTS DURING MUSCULAR CONTRACTIONAnnual Review of Biophysics, 1986
- Effect of cross-bridge kinetics on apparent Ca2+ sensitivity.The Journal of general physiology, 1982
- Energetics and mechanism of actomyosin adenosine triphosphataseBiochemistry, 1976