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Biochemical and Biophysical Research Communications|August 14, 1996
Protein kinase C increases force and slows relaxation in smooth muscle: evidence for regulation of the myosin light chain phosphataseM Ikebe, F V BrozovichBiochemistry|April 23, 1985
Proteolysis of smooth muscle myosin by Staphylococcus aureus protease: preparation of heavy meromyosin and subfragment 1 with intact 20 000-dalton light chainsM Ikebe, D J HartshorneThe Journal of Biological Chemistry|August 25, 1985
Phosphorylation of smooth muscle myosin at two distinct sites by myosin light chain kinaseM Ikebe, D J HartshorneFEBS Letters|April 24, 1995
Requirement of the two-headed structure for the phosphorylation dependent regulation of smooth muscle myosinM Matsu-ura, M IkebeBiochemical and Biophysical Research Communications|December 14, 1995
Developmental and tissue distribution of expression of nonmuscle and smooth muscle isoforms of myosin light chain kinaseS A Fisher, M IkebeBiochemistry|October 7, 1986
Proteolysis and actin-binding properties of 10S and 6S smooth muscle myosin: identification of a site protected from proteolysis in the 10S conformation and by the binding of actinM Ikebe, D J HartshorneJournal of Biochemistry|September 2, 1998
Conformational changes at the highly reactive cystein and lysine regions of skeletal muscle myosin induced by formation of transition state analoguesS Maruta, K Homma, T OhkiEuropean Journal of Biochemistry|September 1, 1989
Localization of the ATP-binding site in the 23-kDa and 20-kDa regions of the heavy chain of the skeletal muscle myosin headS Maruta, T Miyanishi, G MatsudaJournal of Biochemistry|March 25, 2000
Analysis of conformational changes at the unique loop adjacent to the ATP binding site of smooth muscle myosin using a fluorescent probeS Maruta, J Saitoh, T AsakuraBiochemistry|January 16, 1996
Functional expression of mammalian myosin I beta: analysis of its motor activityT Zhu, M Sata, M IkebePageof 55