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Cooperative interactions between troponin molecules bound to the cardiac thin filament
1Department of Medicine, University of Iowa, Iowa City 52242.
Abstract:
Striated muscle thin filaments contain many troponin molecules, which contact each other indirectly via tropomyosin and actin. Such allosteric interactions between troponin molecules may be responsible for cooperative Ca2+ binding to the regulatory sites of the cardiac thin filament (Tobacman, L. S., and Sawyer, D. S. (1990) J. Biol. Chem. 265, 931-939). To test whether thin filament-bound troponin molecules interact, we studied the competitive binding of troponin and troponin T-troponin I (an inhibitory complex lacking the Ca2+ binding subunit troponin C) to actin-tropomyosin. The relative affinities of these two forms of troponin for the thin filament depended upon their relative concentrations. Under conditions where total binding was saturated, each form binds with greater apparent affinity to sites that have similar neighbors. A theoretical model for competitive binding of two ligands to interacting sites on a linear lattice was developed and fit to the data. Surprisingly, energetically unfavorable interactions occurred between adjacent troponin and troponin T-troponin I molecules not only in the presence of Ca2+, but also in the presence of [ethylenebis(oxyethylenenitrilo)]tetraacetic acid and/or myosin subfragment 1. Removal of Ca2+ strengthened the affinity of troponin for the thin filament less than 50%. These results suggest that, even in the absence of myosin, long range allosteric interactions occur between troponin molecules. The detailed involvement of tropomyosin and actin in these interactions remains to be established.
Insights
Thin filament proteins troponin and tropomyosin interact allosterically. Even without myosin, these interactions influence calcium binding and muscle contraction, suggesting complex regulation within muscle thin filaments.
Area of Science:
- Muscle physiology
- Biochemistry
- Molecular biology
Background:
- Striated muscle thin filaments feature troponin molecules interacting via tropomyosin and actin.
- These allosteric interactions are hypothesized to mediate cooperative calcium binding to cardiac thin filament regulatory sites.
Purpose of the Study:
- To investigate allosteric interactions between troponin molecules on the muscle thin filament.
- To determine if troponin molecules interact directly or indirectly on actin-tropomyosin.
Main Methods:
- Studied competitive binding of troponin and troponin T-troponin I (lacking troponin C) to actin-tropomyosin.
- Developed and applied a theoretical model for competitive binding on a linear lattice.
Main Results:
- Binding affinities of troponin forms depended on relative concentrations and neighboring sites.
- Energetically unfavorable interactions were observed between adjacent troponin and troponin T-troponin I molecules.
- Calcium removal only slightly decreased troponin's affinity for the thin filament.
Conclusions:
- Long-range allosteric interactions occur between troponin molecules on the thin filament, independent of myosin.
- The precise roles of tropomyosin and actin in mediating these interactions require further investigation.