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Journal of Molecular Biology|August 25, 1983
An in vitro study of the interactions of skeletal muscle M-protein and creatine kinase with myosin and its subfragmentsJ L Woodhead, S LoweyThe Journal of Biological Chemistry|July 10, 1984
Conformational states of smooth muscle myosin. Effects of light chain phosphorylation and ionic strengthK M Trybus, S LoweyThe Journal of Biological Chemistry|July 4, 1998
Subunit interactions within an expressed regulatory domain of chicken skeletal myosin. Location of the NH2 terminus of the regulatory light chain by fluorescence resonance energy transferL D Saraswat, S LoweyThe Journal of Biological Chemistry|February 15, 2000
Locking regulatory myosin in the off-state with trifluoperazineH Patel, S S Margossian, P D ChantlerCardiovascular Research|February 1, 1993
Kinetics of hydrolysis of cardiac S1 heavy chain isoforms and identification of light chain and actin binding sitesS S Margossian, V B Hatcher, S TaylorThe Journal of Biological Chemistry|December 15, 1985
Mechanism of smooth muscle myosin phosphorylationK M Trybus, S LoweyJournal of Muscle Research and Cell Motility|December 1, 1992
Distribution of developmental myosin isoforms in isolated A-segmentsD A Gordon, S LoweyThe Journal of Biological Chemistry|October 15, 1991
Engineered cysteine mutants of myosin light chain 2. Fluorescent analogues for structural studiesL D Saraswat, S LoweyBiochemistry|October 21, 1975
An immunological approach to the role of the low molecular weight subunits in myosin. I. Physical--chemical and immunological characterization of the light chainsJ C Holt, S LoweyThe Journal of Biological Chemistry|November 5, 1988
The regulatory light chain is required for folding of smooth muscle myosinK M Trybus, S LoweyPageof 8