» Articles » PMID: 10625312

Effects of MgADP on Length Dependence of Tension Generation in Skinned Rat Cardiac Muscle

Overview
Journal Circ Res
Date 2000 Jan 11
PMID 10625312
Citations 44
Authors
Affiliations
Soon will be listed here.
Abstract

The effect of MgADP on the sarcomere length (SL) dependence of tension generation was investigated using skinned rat ventricular trabeculae. Increasing SL from 1.9 to 2.3 microm decreased the muscle width by approximately 11% and shifted the midpoint of the pCa-tension relationship (pCa(50)) leftward by about 0.2 pCa units. MgADP (0.1, 1, and 5 mmol/L) augmented maximal and submaximal Ca(2+)-activated tension and concomitantly diminished the SL-dependent shift of pCa(50) in a concentration-dependent manner. In contrast, pimobendan, a Ca(2+) sensitizer, which promotes Ca(2+) binding to troponin C (TnC), exhibited no effect on the SL-dependent shift of pCa(50), suggesting that TnC does not participate in the modulation of SL-dependent tension generation by MgADP. At a SL of 1. 9 microm, osmotic compression, produced by 5% wt/vol dextran (molecular weight approximately 464 000), reduced the muscle width by approximately 13% and shifted pCa(50) leftward to a similar degree as that observed when increasing SL to 2.3 microm. This favors the idea that a decrease in the interfilament lattice spacing is the primary mechanism for SL-dependent tension generation. MgADP (5 mmol/L) markedly attenuated the dextran-induced shift of pCa(50), and the degree of attenuation was similar to that observed in a study of varying SL. The actomyosin-ADP complex (AM.ADP) induced by exogenous MgADP has been reported to cooperatively promote myosin attachment to the thin filament. We hereby conclude that the increase in the number of force-generating crossbridges on a decrease in the lattice spacing is masked by the cooperative effect of AM.ADP, resulting in depressed SL-dependent tension generation.

Citing Articles

Myosin and tropomyosin-troponin complementarily regulate thermal activation of muscles.

Ishii S, Oyama K, Kobirumaki-Shimozawa F, Nakanishi T, Nakahara N, Suzuki M J Gen Physiol. 2023; 155(12).

PMID: 37870863 PMC: 10591409. DOI: 10.1085/jgp.202313414.


MgADP Promotes Myosin Head Movement toward Actin at Low [Ca] to Increase Force Production and Ca-Sensitivity of Contraction in Permeabilized Porcine Myocardial Strips.

Awinda P, Ma W, Turner K, Zhao J, Gong H, Thompson M Int J Mol Sci. 2022; 23(23).

PMID: 36499408 PMC: 9737397. DOI: 10.3390/ijms232315084.


Effects of omecamtiv mecarbil on the contractile properties of skinned porcine left atrial and ventricular muscles.

Nakanishi T, Oyama K, Tanaka H, Kobirumaki-Shimozawa F, Ishii S, Terui T Front Physiol. 2022; 13:947206.

PMID: 36082222 PMC: 9445838. DOI: 10.3389/fphys.2022.947206.


Muscle active force-length curve explained by an electrophysical model of interfilament spacing.

Rockenfeller R, Gunther M, Hooper S Biophys J. 2022; 121(10):1823-1855.

PMID: 35450825 PMC: 9199101. DOI: 10.1016/j.bpj.2022.04.019.


Sarcomere Length Nonuniformity and Force Regulation in Myofibrils and Sarcomeres.

de Souza Leite F, Rassier D Biophys J. 2020; 119(12):2372-2377.

PMID: 33217382 PMC: 7822744. DOI: 10.1016/j.bpj.2020.11.005.