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Response of compressed skinned skeletal muscle fibers to conditions that simulate fatigue
Authors:Myburgh  Kathryn H; Cooke  Roger
Abstract:Myburgh, Kathryn H., and Roger Cooke. Response ofcompressed skinned skeletal muscle fibers to conditions that simulate fatigue. J. Appl. Physiol. 82(4):1297-1304, 1997.---During fatigue, muscles become weaker, slower,and more economical at producing tension. Studies of skinned musclefibers can explain some but not all of these effects, and, inparticular, they are less economical in conditions that simulatefatigue. We investigated three factors that may contribute to thedifferent behavior of skinned fibers. 1) Skinned fibers have increasedmyofilament lattice spacing, which is reversible by osmoticcompression. 2) A myosin subunit becomes phosphorylated during fatigue.3) Inosine 5'-monophosphate (IMP) accumulates during fatigue. We tested the response ofphosphorylated and unphosphorylated single skinned fibers (isometrictension, contraction velocity, and adenosinetriphosphatase activity) to changes in lattice spacing (0-5% dextran) and IMP (0-5 mM)in the presence of altered concentrations ofPi (3-25 mM),H+ (pH 7-6.2), and ADP(0-5 mM). The response of maximally activated skinned fibers tothe direct metabolites of ATP hydrolysis is not altered by osmoticcompression, phosphorylating myosin subunits, or increasing IMPconcentration. These factors, therefore, do not explain the discrepancybetween intact and skinned fibers during fatigue.

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