Localization and function of M-line-bound creatine kinase. M-band model and creatine phosphate shuttle.
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Summary
Physiological significance of M-line-bound creatine kinase (CK).
- Type
- article
- Published
- 1985-01-01
- Cited by
- 79
- References
- 106
- OpenAlex
- https://openalex.org/W3888375
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:28062567
Keywords
Medicine
References
- Coupled reaction of creatine kinase and myosin A-adenosine triphosphatase.
- The comparative enzymology of creatine kinases. I. Isolation and characterization from chicken and rabbit tissues.
- Regulation of glyceraldehyde 3-phosphate dehydrogenase by phosphocreatine and adenosine triphosphate. IV. Factors affecting in vivo control of enzymatic activity.
- Three-dimensional structure of the vertebrate muscle A-band. III. M-region structure and myosin filament symmetry.
- Function of M-line-bound creatine kinase as intramyofibrillar ATP regenerator at the receiving end of the phosphorylcreatine shuttle in muscle.
- Purification of mitochondrial creatine kinase. Biochemical and immunological characterization.
- A membrane-bound creatine phosphokinase in fragmented sarcoplasmic reticulum.
- Developmental regulation of creatine kinase isoenzymes in myogenic cell cultures from chicken. Levels of mRNA for creatine kinase subunits M and B.
- Compartmentation of mitochondrial creatine phosphokinase. I. Direct demonstration of compartmentation with the use of labeled precursors.
- Differentiation in cultures derived from embryonic chicken muscle. I. Muscle-specific enzyme changes before fusion in EGTA-synchronized cultures.
- Electron microscopy of scallop myosin. Location of regulatory light chains.
- Isolation and physical chemical properties of an M-line protein from skeletal muscle.
- Studies of energy transport in heart cells. Mitochondrial isoenzyme of creatine phosphokinase: kinetic properties and regulatory action of Mg2+ ions.
- Immunofluorescence and inhibitor studies on creatine kinase and mitosis.
- Antibody localization studies of the M-line in striated muscle.
- On the triple localization of creatine kinase in heart and skeletal muscle cells of the rat: evidence for the existence of myofibrillar and mitochondrial isoenzymes.
- A protein that binds specifically to the M-line of skeletal muscle is identified as the muscle form of creatine kinase.
- Ultrastructural localization of M-band proteins in chicken breast muscle as revealed by combined immunocytochemistry and ultramicrotomy.
- Monovalent antibodies against MM-creatine kinase remove the M line from myofibrils.
- Creatine kinase and aldolase isoenzyme transitions in cultures of chick skeletal muscle cells.
Cited by
- Creatine and creatinine metabolism.
- Coupling of creatine kinase to glycolytic enzymes at the sarcomeric I-band of skeletal muscle: a biochemical study in situ
- Rôle de la cytoarchitecture dans la signalisation énergétique du cœur de souris
- Rise above: muscle ring-finger-1 (MURF1) regulation of cardiomyocyte size and energy metabolism.
- Anion Carriers of Mitochondrial Membranes
- Novel interaction partners of creatine kinase isoenzymes in the brain
- Functional coupling of creatine kinases in muscles: Species and tissue specificity
- Compartmentation of creatine kinase isoenzymes in myometrium of gravid guinea‐pig.
- Functional aspects of the X-ray structure of mitochondrial creatine kinase: A molecular physiology approach
- Postnatal development of mouse heart: formation of energetic microdomains
- Creatine kinase is the main target of reactive oxygen species in cardiac myofibrils.
- Ca2+ uptake by cardiac sarcoplasmic reticulum ATPase in situ strongly depends on bound creatine kinase
- Subcellular targeting of metabolic enzymes to titin in heart muscle may be mediated by DRAL/FHL-2
- Mobility of creatine phosphokinase and beta-enolase in cultured muscle cells.
- Role of creatine kinase in force development in chemically skinned rat cardiac muscle
- Muscle-type creatine kinase interacts with central domains of the M-band proteins myomesin and M-protein.
- Compartmentation of ATP synthesis and utilization in smooth muscle: roles of aerobic glycolysis and creatine kinase
- Creatine metabolism and the consequences of creatine depletion in muscle
- Local ATP Generation by Brain-Type Creatine Kinase (CK-B) Facilitates Cell Motility
- In situ compartmentation of creatine kinase in intact sarcomeric muscle: The acto-myosin overlap zone as a molecular sieve
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