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October 1, 1996Annual Review of Physiology528 citations

Thin Filament-Mediated Regulation of Cardiac Contraction

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LTLarry S. Tobacman

Key Result

Recent developments in understanding the structure and dynamics of the cardiac thin filament highlight its distinct features from skeletal muscle and its role in regulating cardiac contraction.

Key Points

  • This review aims to explore the structure and dynamics of proteins in cardiac thin filaments and their regulatory mechanisms in contraction.
  • Review of recent literature on thin filament proteins and their functions in cardiac and skeletal muscles.
  • Discusses protein-protein interactions central to thin filament assembly and regulation.
  • Emphasizes differences between cardiac and skeletal muscle thin filaments.
  • Describes the unique structural characteristics of cardiac thin filaments compared to skeletal ones.
  • Details the cooperative processes of thin filament assembly and how they influence contraction regulation.
  • Highlights recent advancements in understanding the dynamics of troponin and its role in regulating cardiac contraction.

PICO

P
Population
Cardiac contraction

Abstract

Cardiac and skeletal muscle contraction are activated by Ca2+ binding to specific regulatory sites on the striated muscle thin filament. The thin filament is a large allosteric assembly, containing multiple copies of actin, tropomyosin, and the three troponin subunits (troponin C, troponin I, and troponin T). This review describes recent developments in understanding the structure and dynamics of these proteins and how they function to regulate contraction. Emphasis is placed on the cardiac thin filament and on the features that distinguish it from the skeletal muscle system. The discussion also emphasizes current knowledge of the protein-protein interactions involved in the cooperative processes of thin filament assembly and regulation.

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Larry S. Tobacman (1996) conducted a review in Cardiac contraction. Recent developments in understanding the structure and dynamics of the cardiac thin filament highlight its distinct features from skeletal muscle and its role in regulating cardiac contraction.

synapsesocial.com/papers/6a0ece7fa14f152feaf9de09https://doi.org/10.1146/annurev.ph.58.030196.002311
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