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September 1, 1993Canadian Journal of Applied Physiology161 citations

Physiological Significance of Myosin Phosphorylation in Skeletal Muscle

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RGRobert W. GrangeRVRene VandenboomMHMichael E. Houston

Structured PICO

P
Population
Skeletal muscle (specifically fast-twitch muscle)
I
Intervention
Myosin regulatory light chain (P-LC) phosphorylation
O
Outcome
Force enhancement during isometric contraction and work output during shortening and lengthening contractionssurrogate

Myosin P-LC phosphorylation modulates actin-myosin interactions in skeletal muscle, leading to force potentiation and enhanced work output.

Abstract

Each S-1 or head portion of the myosin molecule in skeletal muscle contains a subunit known as the regulatory or phosphorylatable light chain (P-LC). Phosphorylation of the P-LC is mediated by the second messenger Ca2+ and takes place when the muscle fibre is activated. In smooth muscle, phosphorylation of the P-LC is the principal mechanism that initiates contraction, but in skeletal muscle myosin P-LC phosphorylation is not required for contraction and a definitive role has not been established. It has been proposed that P-LC phosphorylation modulates the intrinsic nature of actin-myosin interactions, leading to force potentiation under suboptimal activation conditions. An example of this is posttetanic potentiation. This paper describes a P-LC phosphorylation induced mechanism for force enhancement during isometric contraction. In addition, it summarizes recent data revealing that P-LC phosphorylation is associated with enhanced work output of fast-twitch muscle during shortening and lengthening contractions.

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Cite This Study

Grange et al. (1993) studied this question.

synapsesocial.com/papers/6a84417422c36ed33af79954https://doi.org/10.1139/h93-020
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