4.5 Article

Modeling residual force enhancement with generic cross-bridge models

期刊

MATHEMATICAL BIOSCIENCES
卷 216, 期 2, 页码 172-186

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.mbs.2008.10.005

关键词

Force enhancement; Molecular history-dependence; Stuck cross-bridge model; Multi-cycle model; Strain-dependent rate constants

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The interaction of actin and myosin through cross-bridges explains much of muscle behavior. However, some properties of muscle, such as residual force enhancement, cannot be explained by current cross-bridge models. There is ongoing debate whether conceptual cross-bridge models. as pioneered by Huxley (A.F. Huxley, Muscle structure and theories of contraction, Prog. Biophys. Biophys. Chem. 7 (1957) 255) could, if suitably modified, fit experimental data showing residual force enhancement. Here we prove that there are only two ways to explain residual force enhancement with these 'traditional' cross-bridge models: the first requires cross-bridges to become stuck on actin (the stuck cross-bridge model) while the second requires that cross-bridges that are pulled off beyond a critical strain enter a 'new' unbound state that leads to a new force-producing cycle (the multi-cycle model). Stuck cross-bridge models cannot fit the velocity and stretch amplitude dependence of residual force enhancement, while the multi-cycle models can. The results of this theoretical analysis demonstrate that current kinetic models of cross-bridge action cannot explain the experimentally observed residual force enhancement. Either cross-bridges in the force-enhanced state follow a different kinetic cycle than cross-bridges in a 'normal' force state, or the assumptions underlying traditional cross-bridge models must be violated during experiments that show residual force enhancement. (C) 2008 Elsevier Inc. All rights reserved.

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