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April 11, 202313 citationsOpen Access

In situ structures from relaxed cardiac myofibrils reveal the organization of the muscle thick filament

DTDavide TamborriniZWZhexin WangTWThorsten Wagner

Key Result

Electron cryo-tomography of relaxed cardiac myofibrils revealed the three-dimensional organization of myosin heads and tails, myosin-binding protein C, and titin in the native thick filament.

PICO

E
Exposure / Comparator
Electron cryo-tomography of relaxed cardiac myofibrils
O
Primary Outcome
Molecular architecture of native cardiac sarcomeres in the relaxed state

Limitations

  • The limited resolution does not allow a clear identification of domains for the bowtie-shaped structure on top of the A1 crown.
  • The expected cross-connecting M-bridges are averaged out during the refinement due to their flexibility.
  • Could not determine the location of obscurin due to structural flexibility and localization at the myofibril periphery.
  • Sub-tomogram averaging did not resolve any clear arrangement of the N-terminal region on the thin filament, indicating high heterogeneity.

Abstract

Abstract The thick filament is a key component of sarcomeres, the basic force-generating and load-bearing unit of striated muscle 1 . Mutations in thick filament proteins are associated with familial hypertrophic cardiomyopathy and other heart and muscle diseases 2, 3 . Despite this central importance for sarcomere force generation, it remains unclear how thick filaments are structurally organized and how its components interact with each other and with thin filaments to enable highly regulated muscle contraction. Here, we present the molecular architecture of native cardiac sarcomeres in the relaxed state, determined by electron cryo-tomography. Our reconstruction of the thick filament reveals the three-dimensional organization of myosin heads and tails, myosin-binding protein C (MyBP-C) and titin, elucidating the structural basis for their interaction during muscle contraction. The arrangement of myosin heads is variable depending on their position along the filament, suggesting that they have different capacities in terms of strain susceptibility and activation. Myosin tails exhibit a distinct arrangement and pattern of interactions. These are likely orchestrated by three alpha and three beta titin chains that are arranged like a spring, suggesting the existence of specialized roles of thick filament segments in length-dependent activation and contraction. Surprisingly, while the three titin alpha chains run along the entire length of the thick filament, titin beta does not. The structure also demonstrates that the C-terminal region of MyBP-C binds myosin tails and unexpectedly also directly interacts with the myosin heads, suggesting a previously undescribed direct role in the preservation of the myosin OFF state. Furthermore, we visualize how MyBP-C forms links between thin and thick filaments. These findings establish a robust groundwork for forthcoming research endeavors aiming to explore muscle disorders that involve sarcomeric structural components.

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Cite This Study

Tamborrini et al. (2023) studied this question. Electron cryo-tomography of relaxed cardiac myofibrils was evaluated on Molecular architecture of native cardiac sarcomeres in the relaxed state. Electron cryo-tomography of relaxed cardiac myofibrils revealed the three-dimensional organization of myosin heads and tails, myosin-binding protein C, and titin in the native thick filament.

synapsesocial.com/papers/6a5c20dca8b4d22a251e8ec0https://doi.org/10.1101/2023.04.11.536387
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Structure of the native myosin filament in the relaxed cardiac sarcomere2023 · 165 citations
  2. 2Three-dimensional structure of vertebrate cardiac muscle myosin filaments2008 · 277 citations
  3. 3Structure of mavacamten-free human cardiac thick filaments within the sarcomere by cryoelectron tomography2024 · 31 citations
  4. 4Cryo-EM structure of the human cardiac myosin filament2023 · 18 citations
  5. 5Comparing cryo-EM structures of the vertebrate cardiac muscle thick filament2026 · 1 citations