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Electron paramagnetic resonance and nanosecond fluorescence depolarization studies on creatine-phosphokinase interaction with myosin and its fragments.
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Experimental depletion of creatine and phosphocreatine from skeletal muscle.
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Functional compartmentation of ATP and creatine phosphate in heart muscle.
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Isolation and physical chemical properties of an M-line protein from skeletal muscle.
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Metabolite status of the heart in acute insufficiency due to 1-fluoro-2,4-dinitrobenzene.
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The comparative enzymology of creatine kinases. I. Isolation and characterization from chicken and rabbit tissues.
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"M-substance", a new protein constituting the M-line of myofibrils.
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Study of energy transport mechanism in myocardial cells.
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Location of the creatine phosphokinase binding site of myosin.
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[The significance of creatine phosphate and adenosine triphosphate in terms of energy production, transport and utilization in the healthy and insufficient heart muscle].
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The steady state kinetic constants of the Mg-activated myofibrillar ATPase.
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Bound-nucleotide exchange in actin and actomyosin.
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THE ONTOGENY OF CREATINE KINASE ISOZYMES.
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Purification of arginine kinase from lobster and a study of some factors affecting its reactivation.
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The non-histone proteins of chromatin, their isolation and composition in a number of tissues.
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Kinetics of coupled enzymes. Creatine kinase and myosin A.
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Antibody localization studies of the M-line in striated muscle.
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Incubation film technique for the histochemical localization of creatine kinase.
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The comparative enzymology of creatine kinases. II. Physical and chemical properties.
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Adenosinetriphosphate-creatine transphosphorylase. III. Kinetic studies.
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Rate determining step of the coupled reaction system composed of H-meromyosin-adenosinetriphosphatase and creatine kinase.
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High activity of creatine kinase in mitochondria from muscle and brain and evidence for a separate mitochondrial isoenzyme of creatine kinase.
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Some aspects of the structural organization of the myofibril as revealed by antibody--staining methods.
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M-protein.
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Creatine kinase of rat heart mitochondria. Coupling of creatine phosphorylation to electron transport.
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The M band. Studies with fluorescent antibody staining.
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Compositional studies of myofibrils from rabbit striated muscle.
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Immunohistochemical localization of creatine phosphokinase in skeletal muscle.
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On the creatine phosphokinase of heart muscle mitochondria.
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Structure of muscle filaments from immunohistochemical and ultrastructural studies.
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Protein measurement with the Folin phenol reagent.
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Native conformation of M-protein.
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On the molecular weight of myosin. II.
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M band protein. Two components isolated from chicken breast muscle.
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Localization of creatine kinase isoenzymes in myofibrils. II. Chicken heart muscle.
J Cell Biol. 1977 Nov;75(2 Pt 1):318-25
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Possible origin of a minor virus specific protein (A1) in Q-beta particles.
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A protein that binds specifically to the M-line of skeletal muscle is identified as the muscle form of creatine kinase.
Proc Natl Acad Sci U S A. 1973 Mar;70(3):702-5
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The myofibrillar M-band in the cryo-section-analysis of section thickness.
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Differentiation in cultures derived from embryonic chicken muscle. II. Phosphorylase histochemistry and fluorescent antibody staining for creatin kinase and aldolase.
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The possible role of the mitochondrial bound creatine kinase in regulation of mitochondrial respiration.
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