Length-dependent activation and auto-oscillation in skeletal myofibrils at partial activation by Ca2+ |
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Authors: | Shimamoto Yuta Suzuki Madoka Ishiwata Shin'ichi |
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Affiliation: | a Department of Physics, Faculty of Science and Engineering, Waseda University, 3-4-1 Okubo, Shinjuku-ku, Tokyo 169-8555, Japan b Consolidated Research Institute for Advanced Science and Medical Care, Waseda University, Japan c Advanced Research Institute for Science and Engineering, Waseda University, Japan |
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Abstract: | The length-dependent activation of skeletal myofibrils was examined at the single-sarcomere level with phase-contrast microscopy at sarcomere length (SL) >2.2 μm. At the maximal activation by Ca2+ (pCa 4.5) the active force linearly decreased with increasing SL, while at partial activation by Ca2+ (pCa 6.1-6.5) the larger active force was generated at longer SL. Throughout these experiments, the distribution of SL was kept homogeneous upon activation. In addition, we found that the spontaneous oscillation of force and SL frequently occurs in the SL range 2.2-2.6 μm at pCa 6.1-6.2. Either changes in [Ca2+] or osmotic compression of the myofilament lattice induced by the addition of dextran T-500, affected both the length dependence of activation and the occurrence of auto-oscillation. These results suggest that the force-generating properties of sarcomeres in striated muscle are determined not only by [Ca2+], but also by the lattice spacing as a function of SL. |
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Keywords: | SL, sarcomere length CSA, cross-sectional area |
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