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Journal Abstract Search


229 related items for PubMed ID: 9639546

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  • 4. Evidence for the essential role of myosin subfragment-2 in the ATP-dependent actin-myosin sliding in muscle contraction.
    Tsuchiya T, Tanaka H, Shirakawa I, Karr T, Sugi H.
    Jpn J Physiol; 1998 Oct; 48(5):383-7. PubMed ID: 9852347
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  • 6. The load dependence and the force-velocity relation in intact myosin filaments from skeletal and smooth muscles.
    Cheng YS, de Souza Leite F, Rassier DE.
    Am J Physiol Cell Physiol; 2020 Jan 01; 318(1):C103-C110. PubMed ID: 31618078
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  • 7. Force-velocity relationships in actin-myosin interactions causing cytoplasmic streaming in algal cells.
    Sugi H, Chaen S.
    J Exp Biol; 2003 Jun 01; 206(Pt 12):1971-6. PubMed ID: 12756278
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  • 9. Bi-directional movement of actin filaments along long bipolar tracks of oriented rabbit skeletal muscle myosin molecules.
    Yamada A, Yoshio M, Nakayama H.
    FEBS Lett; 1997 Jun 16; 409(3):380-4. PubMed ID: 9224694
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  • 16. Dependence of the work done by ATP-induced actin-myosin sliding on the initial baseline force: its implications for kinetic properties of myosin heads in muscle contraction.
    Sugi H, Oiwa K, Chaen S.
    Adv Exp Med Biol; 1993 Jun 16; 332():303-9; discussion 310-1. PubMed ID: 8109344
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  • 18. Unidirectional sliding of myosin filaments along the bundle of F-actin filaments spontaneously formed during superprecipitation.
    Higashi-Fujime S.
    J Cell Biol; 1985 Dec 16; 101(6):2335-44. PubMed ID: 4066761
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  • 19. Minimum structural unit required for energy transduction in muscle.
    Yanagida T, Harada Y.
    Adv Exp Med Biol; 1988 Dec 16; 226():277-87. PubMed ID: 3407516
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