Length dependence of Ca2+ sensitivity of tension in mouse cardiac myocytes expressing skeletal troponin C.
- 15 February 1995
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 483 (1) , 131-139
- https://doi.org/10.1113/jphysiol.1995.sp020573
Abstract
1. Beat-to-beat performance of myocardium is highly dependent on sarcomere length. The physiological basis for this effect is not well understood but presumably includes alterations in the extent of overlap between thick and thin filaments. Sarcomere length dependence of activation also appears to be involved since length-tension relationships in cardiac muscle are usually steeper than those in skeletal muscle. 2. An explanation recently proposed to account for the difference between length-tension relationships is that the cardiac isoform of troponin C (cTnC) has intrinsic properties that confer greater length-dependent changes in the Ca2+ sensitivity of tension than does skeletal troponin C (sTnC), presumably due to greater length-dependent changes in the Ca(2+)-binding affinity of cTnC. To test this hypothesis, transgenic mice were developed in which fast sTnC was expressed ectopically in the heart. This allowed a comparison of the length dependence of the Ca2+ sensitivity of tension between myocytes having thin filaments that contained either endogenous cTnC or primarily sTnC. 3. In myocytes from both transgenic and normal mice, the Ca2+ sensitivity of tension increased similarly when mean sarcomere length was increased from approximately 1.83 to 2.23 microns. In both cases, the mid-point (pCa50) of the tension-pCa (i.e. -log[Ca2+]) relationship shifted 0.12 +/- 0.01 pCa units (mean +/- S.E.M.) in the direction of lower Ca2+. 4. We conclude that the Ca2+ sensitivity of tension in myocytes changes as a function of sarcomere length but is independent of the isoform of troponin C present in the thin filaments.Keywords
This publication has 27 references indexed in Scilit:
- The effect of altered temperature on Ca2(+)-sensitive force in permeabilized myocardium and skeletal muscle. Evidence for force dependence of thin filament activation.The Journal of general physiology, 1990
- Length and myofilament spacing-dependent changes in calcium sensitivity of skeletal fibres: effects of pH and ionic strengthJournal of Muscle Research and Cell Motility, 1988
- Effect of troponin C on the cooperativity in Ca2+ activation of cardiac muscleFEBS Letters, 1988
- Skinned ventricular fibres: troponin C extraction is species-dependent and its replacement with skeletal troponin C changes Sr2+ activation propertiesJournal of Muscle Research and Cell Motility, 1988
- Molecular Basis for the Influence of Muscle Length on Myocardial PerformanceScience, 1988
- Atrial Natriuretic Factor-SV40 T Antigen Transgenes Produce Tumors and Cardiac Arrhythmias in MiceScience, 1988
- The effects of partial extraction of TnC upon the tension-pCa relationship in rabbit skinned skeletal muscle fibers.The Journal of general physiology, 1985
- The cellular basis of the length-tension relation in cardiac muscleJournal of Molecular and Cellular Cardiology, 1985
- Dependence of the contractile activation of skinned cardiac cells on the sarcomere lengthNature, 1975
- X-ray diffraction studies of the filament lattice of striated muscle in various bathing mediaJournal of Molecular Biology, 1968