Tropomyosin Period 3 is Essential for Enhancement of Isometric Tension in Thin Filament-reconstituted Bovine Myocardium
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Tropomyosin (Tm) consists of 7 quasiequivalent repeats known as "periods," and its specific function may be associated with these periods. To test the hypothesis that either period 2 or 3 promotes force generation by inducing a positive allosteric effect on actin, we reconstituted the thin filament with mutant Tm in which either period 2 (Delta2Tm) or period 3 (Delta3Tm) was deleted. We then studied: isometric tension, stiffness, 6 kinetic constants, and the pCa-tension relationship. N-terminal acetylation of Tm did not cause any differences. The isometric tension in Delta2Tm remained unchanged, and was reduced to approximately 60% in Delta3Tm. Although the kinetic constants underwent small changes, the occupancy of strongly attached cross-bridges was not much different. The Hill factor (cooperativity) did not differ significantly between Delta2Tm (1.79 +/- 0.19) and the control (1.73 +/- 0.21), or Delta3Tm (1.35 +/- 0.22) and the control. In contrast, pCa(50) decreased slightly in Delta2Tm (5.11 +/- 0.07), and increased significantly in Delta3Tm (5.57 +/- 0.09) compared to the control (5.28 +/- 0.04). These results demonstrate that, when ions are present at physiological concentrations in the muscle fiber system, period 3 (but not period 2) is essential for the positive allosteric effect that enhances the interaction between actin and myosin, and increases isometric force of each cross-bridge.
Structural Effects of Disease-Related Mutations in Actin-Binding Period 3 of Tropomyosin.
Kuruba B, Kaczmarek M, Kesik-Brodacka M, Fojutowska M, Sliwinska M, Kostyukova A Molecules. 2021; 26(22).
PMID: 34834072 PMC: 8622905. DOI: 10.3390/molecules26226980.
Mutations Q93H and E97K in Disrupt Ca-Dependent Regulation of Actin Filaments.
Sliwinska M, Robaszkiewicz K, Wasag P, Moraczewska J Int J Mol Sci. 2021; 22(8).
PMID: 33919826 PMC: 8070786. DOI: 10.3390/ijms22084036.
Functional significance of HCM mutants of tropomyosin, V95A and D175N, studied with motility assays.
Ishii S, Suzuki M, Ishiwata S, Kawai M Biophys Physicobiol. 2019; 16:28-40.
PMID: 30923661 PMC: 6435021. DOI: 10.2142/biophysico.16.0_28.
Kirwan J, Hodges R J Biol Chem. 2013; 289(7):4356-66.
PMID: 24362038 PMC: 3924298. DOI: 10.1074/jbc.M113.507236.
Periodicities designed in the tropomyosin sequence and structure define its functions.
Barua B Bioarchitecture. 2013; 3(3):51-6.
PMID: 23887197 PMC: 3782539. DOI: 10.4161/bioa.25616.