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June 1, 1986Annual Review of Biophysics and Biophysical Chemistry244 citations

Relationships Between Chemical and Mechanical Events During Muscular Contraction

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MHMark G. HibberdDTDavid R. Trentham

Key Points

  • This review synthesizes cross-bridge theories with biochemical mechanisms of actomyosin ATPase.
  • Conducted mechanical and biochemical investigations on the same system.

Structured PICO

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Population
Muscle contraction systems (actomyosin ATPase, cross-bridges)

This review synthesizes cross-bridge theories and biochemical mechanisms of actomyosin ATPase to better understand the mechanochemistry of muscle contraction.

Abstract

In this review we have attempted a synthesis of ideas from cross-bridge theories of muscle contraction with biochemical mechanisms of the actomyosin ATPase. This synthesis of ideas has been based on experimental approaches that permit mechanical and biochemical investigations on the same system. We have formulated an example of how biochemical processes may be influenced by strain in the cross-bridge and have highlighted how much has yet to be learned about the biochemistry (and protein structure) of the working stroke of the cross-bridge. Processes that do not appear to be related to the working stroke such as ATP-induced dissociation of actomyosin or protein-bound ATP hydrolysis appear to be similar kinetically in fibers and isolated actomyosin. But, as might be expected, this is not the case in those processes that involve force production and the performance of mechanical work. There appears to be a sound base from which the mechanochemistry of individual processes within the cross-bridge cycle can be analyzed in detail. There is a need for the development of spectroscopic techniques, particularly those that might detect the rate of Pi and ADP dissociation from cross-bridges into the medium. The combination of pulse photolysis of caged ATP and time-resolved structure analysis by use of synchrotron radiation (53) should lead to better understanding of the structure of cross-bridge states in relation to the chemistry and mechanics of transient intermediates.

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Cite This Study

Hibberd et al. (1986) studied this question.

synapsesocial.com/papers/6a1930b1c70f8b1c3357fb9bhttps://doi.org/10.1146/annurev.bb.15.060186.001003
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Also Consider

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

  1. 1The Relation of Muscle Biochemistry to Muscle Physiology1980 · 296 citations
  2. 2Correlation between Mechanical and Enzymatic Events in Contracting Skeletal Muscle Fiber2004 · 10 citations
  3. 3The cross-bridge cycle in muscle. Mechanical, biochemical, and structural studies on single skinned rabbit psoas fibers to characterize cross-bridge kinetics in muscle for correlation with the actomyosin-ATPase in solution1986 · 81 citations
  4. 4MECHANOCHEMICAL ENERGY TRANSDUCTION IN MUSCLE CONTRACTION2006 · 1 citations
  5. 5Using optical tweezers to relate the chemical and mechanical cross-bridge cycles2004 · 13 citations