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Tropomyosin positions in regulated thin filaments revealed by cryoelectron microscopy
1Department of Physiology, Boston University School of Medicine, Boston, Massachusetts 02118, USA.
Abstract:
Past attempts to detect tropomyosin in electron micrograph images of frozen-hydrated troponin-regulated thin filaments under relaxing conditions have not been successful. This raised the possibility that tropomyosin may be disordered on filaments in the off-state, a possibility at odds with the steric blocking model of muscle regulation. By using cryoelectron microscopy and helical image reconstruction we have now resolved the location of tropomyosin in both relaxing and activating conditions. In the off-state, tropomyosin adopts a position on the outer domain of actin with a binding site virtually identical to that determined previously by negative staining, although at a radius of 3.8 nm, slightly higher than found in stained filaments. Molecular fitting to the atomic model of F-actin shows that tropomyosin is localized over sites on actin subdomain 1 required for myosin binding. Restricting access to these sites would inhibit the myosin-cross-bridge cycle, and hence contraction. Under high Ca(2+) activating conditions, tropomyosin moved azimuthally, away from its blocking position to the same site on the inner domain of actin previously determined by negative staining, also at 3.8 nm radius. These results provide strong support for operation of the steric mechanism of muscle regulation under near-native solution conditions and also validate the use of negative staining in investigations of muscle thin filament structure.
Insights
Tropomyosin
Area of Science:
- Muscle biology
- Structural biology
- Biophysics
Background:
- Previous studies could not locate tropomyosin in relaxed muscle thin filaments, challenging the steric blocking model.
- The steric blocking model proposes tropomyosin regulates muscle contraction by blocking myosin binding sites on actin.
Purpose of the Study:
- To determine the precise location of tropomyosin in troponin-regulated thin filaments under both relaxing and activating conditions.
- To clarify the role of tropomyosin in the steric blocking mechanism of muscle regulation.
Main Methods:
- Cryo-electron microscopy (cryo-EM) and helical image reconstruction were employed.
- Molecular fitting of atomic models to the reconstructed cryo-EM density maps was performed.
Main Results:
- Tropomyosin was localized to the outer domain of actin in the relaxing (off) state, covering myosin binding sites.
- Under activating conditions, tropomyosin shifted to the inner domain of actin.
- The observed positions were consistent with the steric blocking model and validated negative staining results.
Conclusions:
- The study provides strong evidence for the steric mechanism of muscle regulation under near-native conditions.
- Cryo-EM and helical reconstruction are effective for studying muscle thin filament structure.
- Tropomyosin's position directly regulates myosin binding and thus muscle contraction.