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November 1, 2023Nature165 citationsOpen Access

Structure of the native myosin filament in the relaxed cardiac sarcomere

DTDavide TamborriniUniversity of BaselZWZhexin WangMRC Laboratory of Molecular BiologyTWThorsten WagnerMax Planck Institute of Molecular Physiology

Key Result

Cryo-electron tomography revealed the 3D organization of myosin, titin, and myosin-binding protein C in the native cardiac thick filament, demonstrating that MyBP-C bridges thin and thick filaments.

PICO

P
Population
In vitro structural biology study using cryo-electron tomography to determine the molecular architecture of native cardiac sarcomeres from demembranated mouse cardiac myofibrils.
E
Exposure / Comparator
Cryo-electron tomography
O
Primary Outcome
3D molecular architecture of the thick filament

Limitations

  • Limited resolution did not allow clear identification of all domains
  • Expected cross-connecting M bridges were averaged out during refinement due to flexibility
  • Could not determine the location of obscurin

Abstract

. Despite the central importance of the thick filament, its molecular organization remains unclear. Here we present the molecular architecture of native cardiac sarcomeres in the relaxed state, determined by cryo-electron tomography. Our reconstruction of the thick filament reveals the three-dimensional organization of myosin, titin and myosin-binding protein C (MyBP-C). The arrangement of myosin molecules is dependent on their position along the filament, suggesting specialized capacities in terms of strain susceptibility and force generation. Three pairs of titin-α and titin-β chains run axially along the filament, intertwining with myosin tails and probably orchestrating the length-dependent activation of the sarcomere. Notably, whereas the three titin-α chains run along the entire length of the thick filament, titin-β chains do not. The structure also demonstrates that MyBP-C bridges thin and thick filaments, with its carboxy-terminal region binding to the myosin tails and directly stabilizing the OFF state of the myosin heads in an unforeseen manner. These results provide a foundation for future research investigating muscle disorders involving sarcomeric components.

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Cite This Study

Tamborrini et al. (2023) studied Cardiac sarcomere structure. Cryo-electron tomography was evaluated on 3D molecular architecture of the thick filament. Cryo-electron tomography revealed the 3D organization of myosin, titin, and myosin-binding protein C in the native cardiac thick filament, demonstrating that MyBP-C bridges thin and thick filaments.

synapsesocial.com/papers/6a32b25e2acd7f61e3cc6136https://doi.org/10.1038/s41586-023-06690-5
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