Tension and stiffness of frog muscle fibres at full filament overlap
- 1 October 1990
- journal article
- research article
- Published by Springer Nature in Journal of Muscle Research and Cell Motility
- Vol. 11 (5) , 371-377
- https://doi.org/10.1007/bf01739758
Abstract
Stiffness measurements in activated skeletal muscle fibres are often used as one means of estimating the number of attached crossbridges on the assumption that myofilament compliances do not contribute significantly to the fibre compliance. This assumption was tested by studying the effects of sarcomere length on fibre stiffness in the plateau region of the length-tension diagram (from 1.96 to 2.16μm sarcomere length in the tibialis anterior muscle of the frog). Lengthening of the sarcomere across this region in fact, produces only an increase in the proportion of actin filament free from cross-bridges without altering the amount of effective overlap; no change in fibre stiffness is therefore expected if actin filaments are perfectly rigid. The results show that while tetanic tension remained constant within 1.5%, as the sarcomere length was increased from 1.96 to 2.16μm fibre stiffness decreased by about 4%, indicating that a significant proportion of sarcomere compliance is localized in the actin filaments. A simple model based on the sliding filament theory was used in order to calculate the relative contribution of actin filaments to fibre compliance. In the model it was assumed that fibre compliance resulted from the combination of crossbridge compliance (distributed over the overlap zone) in series with thin filament and tendon compliances. The calculations show that the experimental data could be adequately predicted only assuming that about 19% of sarcomere compliance is due to actin filament compliance.Keywords
This publication has 17 references indexed in Scilit:
- Plateau and descending limb of the sarcomere length‐tension relation in short length‐clamped segments of frog muscle fibres.The Journal of Physiology, 1988
- Muscle force and stiffness during activation and relaxation. Implications for the actomyosin ATPase.The Journal of general physiology, 1988
- Stiffness of frog muscle fibres during rise of tension and relaxation in fixed-end or length-clamped tetaniPflügers Archiv - European Journal of Physiology, 1987
- The stiffness of frog skinned muscle fibres at altered lateral filament spacing.The Journal of Physiology, 1986
- Rate of force generation in muscle: correlation with actomyosin ATPase activity in solution.Proceedings of the National Academy of Sciences, 1986
- Structural changes during activation of frog muscle studied by time-resolved X-ray diffractionJournal of Molecular Biology, 1986
- Muscular Contraction: Kinetics of Crossbridge Attachment Studied by High-Frequency Stiffness MeasurementsScience, 1982
- Tension, stiffness, unloaded shortening speed and potentiation of frog muscle fibres at sarcomere lengths below optimum.The Journal of Physiology, 1981
- Tension responses to sudden length change in stimulated frog muscle fibres near slack lengthThe Journal of Physiology, 1977
- The low-angle X-ray diagram of vertebrate striated muscle and its behaviour during contraction and rigorJournal of Molecular Biology, 1967