메뉴 건너뛰기




Volumn 276, Issue 1 45-1, 1999, Pages

CK inhibition accelerates transcytosolic energy signaling during rapid workload steps in isolated rabbit hearts

Author keywords

Adenosine 5' diphosphate diffusion; Contractile reserve; Energy transduction; Oxygen consumption

Indexed keywords

CREATINE KINASE;

EID: 0032946112     PISSN: 03636135     EISSN: None     Source Type: Journal    
DOI: 10.1152/ajpheart.1999.276.1.h134     Document Type: Article
Times cited : (22)

References (36)
  • 3
    • 0019471878 scopus 로고
    • Transport of energy in muscle: The phosphorylcreatine shuttle
    • Bessman, S. P., and P. G. Geiger. Transport of energy in muscle: the phosphorylcreatine shuttle. Science 211: 448-452, 1981.
    • (1981) Science , vol.211 , pp. 448-452
    • Bessman, S.P.1    Geiger, P.G.2
  • 5
    • 17544373377 scopus 로고    scopus 로고
    • Suppression of creatine kinase-catalyzed phosphotransfer results in increased phosphoryl transfer by adenylate kinase in intact skeletal muscle
    • Dzeja, P. P., R. J. Zeleznikar, and N. D. Goldberg. Suppression of creatine kinase-catalyzed phosphotransfer results in increased phosphoryl transfer by adenylate kinase in intact skeletal muscle. J. Biol. Chem. 271: 12847-12851, 1996.
    • (1996) J. Biol. Chem. , vol.271 , pp. 12847-12851
    • Dzeja, P.P.1    Zeleznikar, R.J.2    Goldberg, N.D.3
  • 6
    • 0031680034 scopus 로고    scopus 로고
    • Adenylate kinase: Kinetic behaviour in intact cells indicates it is integral to multiple cellular processes
    • Dzeja, P. P., R. J. Zeleznikar, and N. D. Goldberg. Adenylate kinase: kinetic behaviour in intact cells indicates it is integral to multiple cellular processes. Mol. Cell. Biochem. 184: 169-182, 1998.
    • (1998) Mol. Cell. Biochem. , vol.184 , pp. 169-182
    • Dzeja, P.P.1    Zeleznikar, R.J.2    Goldberg, N.D.3
  • 8
    • 0020479978 scopus 로고
    • Compartmentation of mitochondrial creatine phosphokinase. I. Direct demonstration of compartmentation with the use of labelled precursors
    • Erickson-Viitanen, S., P. Vitanen, P. J. Geiger, W. C. T. Yang, and S. P. Bessman. Compartmentation of mitochondrial creatine phosphokinase. I. Direct demonstration of compartmentation with the use of labelled precursors. J. Biol. Chem. 257: 14395-14404, 1982.
    • (1982) J. Biol. Chem. , vol.257 , pp. 14395-14404
    • Erickson-Viitanen, S.1    Vitanen, P.2    Geiger, P.J.3    Yang, W.C.T.4    Bessman, S.P.5
  • 9
    • 0023264004 scopus 로고
    • Complete inhibition of creatine kinase in isolated perfused rat hearts
    • Endocrinol. Metab. 15
    • Fossel, E. T., and H. Hoefeler. Complete inhibition of creatine kinase in isolated perfused rat hearts. Am. J. Physiol. 252 (Endocrinol. Metab. 15): E124-E130, 1987.
    • (1987) Am. J. Physiol. , vol.252
    • Fossel, E.T.1    Hoefeler, H.2
  • 10
    • 0029098914 scopus 로고
    • Inhibition of the creatine kinase reaction decreases the contractile reserve of isolated rabbit hearts
    • Heart Circ. Physiol. 38
    • Hamman, B. L., J. A. Bittl, W. E. Jacobus, P. D. Allen, R. S. Spencer, R. Tian, and J. S. Ingwall. Inhibition of the creatine kinase reaction decreases the contractile reserve of isolated rabbit hearts. Am. J. Physiol. 269 (Heart Circ. Physiol. 38): H1030-H1036, 1995.
    • (1995) Am. J. Physiol. , vol.269
    • Hamman, B.L.1    Bittl, J.A.2    Jacobus, W.E.3    Allen, P.D.4    Spencer, R.S.5    Tian, R.6    Ingwall, J.S.7
  • 11
    • 0023154642 scopus 로고
    • Why do cells need phosphocreatine and a phosphocreatine shuttle?
    • Kammermeier, H. Why do cells need phosphocreatine and a phosphocreatine shuttle? J. Mol. Cell. Cardiol. 19: 115-118, 1987.
    • (1987) J. Mol. Cell. Cardiol. , vol.19 , pp. 115-118
    • Kammermeier, H.1
  • 12
    • 0029752810 scopus 로고    scopus 로고
    • Cardiac pump function of the isolated rat heart at two modes of energy deprivation and the effect of adrenergic stimulation
    • Kapelko, V. I., V. L. Lakomkin, O. V. Korchazhkina, and O. I. Pisarenko. Cardiac pump function of the isolated rat heart at two modes of energy deprivation and the effect of adrenergic stimulation. Mol. Cell. Biochem. 163/164: 131-136, 1996.
    • (1996) Mol. Cell. Biochem. , vol.163-164 , pp. 131-136
    • Kapelko, V.I.1    Lakomkin, V.L.2    Korchazhkina, O.V.3    Pisarenko, O.I.4
  • 13
    • 0026787697 scopus 로고
    • Specific enhancement of the cardiac myofibrillar ATPase by bound creatine kinase
    • Krause, S. M., and W. E. Jacobus. Specific enhancement of the cardiac myofibrillar ATPase by bound creatine kinase. J. Biol. Chem. 267: 2480-2486, 1992.
    • (1992) J. Biol. Chem. , vol.267 , pp. 2480-2486
    • Krause, S.M.1    Jacobus, W.E.2
  • 14
    • 0018401677 scopus 로고
    • Isolation of mitochondria with emphasis on heart mitochondria from small amounts of tissue
    • Mela, L., and S. Seitz. Isolation of mitochondria with emphasis on heart mitochondria from small amounts of tissue. Methods Enzymol. 55: 39-46, 1979.
    • (1979) Methods Enzymol. , vol.55 , pp. 39-46
    • Mela, L.1    Seitz, S.2
  • 15
    • 0021436518 scopus 로고
    • A simple analysis of the "phosphocreatine shuttle."
    • A., Cell Physiol. 15
    • Meyer, R., A., H. L. Sweeney, and M. J. Kushmerick. A simple analysis of the "phosphocreatine shuttle." Am. J. Physiol. 246 (Cell Physiol. 15): C365-C377, 1984.
    • (1984) Am. J. Physiol. , vol.246
    • Meyer, R.1    Sweeney, H.L.2    Kushmerick, M.J.3
  • 17
    • 0020669405 scopus 로고
    • Determination of total protein
    • Peterson, G. L. Determination of total protein. Methods Enzymol. 91: 95-105, 1983.
    • (1983) Methods Enzymol. , vol.91 , pp. 95-105
    • Peterson, G.L.1
  • 18
    • 0028017703 scopus 로고
    • Metabolic compartmentation and substrate channelling in muscle cells. Role of coupled creatine kinases in in vivo regulation of cellular respiration-a synthesis
    • Saks, V. A., Z. A. Khuchua, E. V. Vasilyeva, O. Yu Belikova, and A. V. Kuznetsov. Metabolic compartmentation and substrate channelling in muscle cells. Role of coupled creatine kinases in in vivo regulation of cellular respiration-a synthesis. Mol. Cell. Biochem. 133/134: 155-192, 1994.
    • (1994) Mol. Cell. Biochem. , vol.133-134 , pp. 155-192
    • Saks, V.A.1    Khuchua, Z.A.2    Vasilyeva, E.V.3    Belikova, O.Yu.4    Kuznetsov, A.V.5
  • 20
    • 0029988948 scopus 로고    scopus 로고
    • Metabolic control and metabolic capacity: Two aspects of creatine kinase functioning in the cells
    • Saks, V. A., R. Ventura-Clapier, and M. K. Aliev. Metabolic control and metabolic capacity: two aspects of creatine kinase functioning in the cells. Biochim. Biophys. Acta 1274: 81-88, 1996.
    • (1996) Biochim. Biophys. Acta , vol.1274 , pp. 81-88
    • Saks, V.A.1    Ventura-Clapier, R.2    Aliev, M.K.3
  • 21
    • 0028030901 scopus 로고
    • Interaction of creatine kinase and adenylate kinase systems in muscle cells
    • Savabi, F. Interaction of creatine kinase and adenylate kinase systems in muscle cells. Mol. Cell. Biochem. 133/134: 145-152, 1994.
    • (1994) Mol. Cell. Biochem. , vol.133-134 , pp. 145-152
    • Savabi, F.1
  • 22
    • 0022212894 scopus 로고
    • Creatine kinase kinetics, ATP turnover, and cardiac performance in hearts depleted of creatine with the substrate analogue β-guanidinopropionic acid
    • Shoubridge, E. A., F. M. H. Jeffry, J. M. Keogh, G. K. Radda, and A.-M. L. Seymour. Creatine kinase kinetics, ATP turnover, and cardiac performance in hearts depleted of creatine with the substrate analogue β-guanidinopropionic acid. Biochim. Biophys. Acta 847: 25-32, 1985.
    • (1985) Biochim. Biophys. Acta , vol.847 , pp. 25-32
    • Shoubridge, E.A.1    Jeffry, F.M.H.2    Keogh, J.M.3    Radda, G.K.4    Seymour, A.-M.L.5
  • 23
    • 0028157167 scopus 로고
    • The importance of the creatine kinase reaction: The concept of metabolic capacitance
    • Sweeney, H. L. The importance of the creatine kinase reaction: the concept of metabolic capacitance. Med. Sci. Sports Exerc. 26: 30-36, 1994.
    • (1994) Med. Sci. Sports Exerc. , vol.26 , pp. 30-36
    • Sweeney, H.L.1
  • 25
    • 0030008105 scopus 로고    scopus 로고
    • Energetic basis for reduced contractile reserve in isolated rat hearts
    • Heart Circ. Physiol. 39
    • Tian, R., and J. S. Ingwall. Energetic basis for reduced contractile reserve in isolated rat hearts. Am. J. Physiol. 270 (Heart Circ. Physiol. 39): H1207-H1216, 1996.
    • (1996) Am. J. Physiol. , vol.270
    • Tian, R.1    Ingwall, J.S.2
  • 26
    • 0038070028 scopus 로고    scopus 로고
    • Effect of glycolytic buffering on myocardial transcytosolic energy signaling
    • Van Beek, J. H. G. M., M. H. J. Eijgelshoven, X. Tian, and C. J. van Echteld. Effect of glycolytic buffering on myocardial transcytosolic energy signaling (Abstract). Circulation 96: I-573, 1997.
    • (1997) Circulation , vol.96
    • Van Beek, J.H.G.M.1    Eijgelshoven, M.H.J.2    Tian, X.3    Van Echteld, C.J.4
  • 28
    • 0026061241 scopus 로고
    • Response time of cardiac mitochondrial oxygen consumption to heart rate steps
    • Heart Circ. Physiol. 29
    • Van Beek, J. H. G. M., and N. Westerhof. Response time of cardiac mitochondrial oxygen consumption to heart rate steps. Am. J. Physiol. 260 (Heart Circ. Physiol. 29): H613-H625, 1991.
    • (1991) Am. J. Physiol. , vol.260
    • Van Beek, J.H.G.M.1    Westerhof, N.2
  • 31
    • 0029147509 scopus 로고
    • Muscle creatine kinase-deficient mice. II. Cardiac and skeletal muscles exhibit tissue-specific adaptation of the mitochondrial function
    • Veksler, V. A., A. V. Kuznetsov, K. Anflous, P. Mateo, J. van Deursen, B. Wieringa, and R. Ventura-Clapier. Muscle creatine kinase-deficient mice. II. Cardiac and skeletal muscles exhibit tissue-specific adaptation of the mitochondrial function. J. Biol. Chem. 270: 19921-19929, 1995.
    • (1995) J. Biol. Chem. , vol.270 , pp. 19921-19929
    • Veksler, V.A.1    Kuznetsov, A.V.2    Anflous, K.3    Mateo, P.4    Van Deursen, J.5    Wieringa, B.6    Ventura-Clapier, R.7
  • 32
  • 33
    • 0026585611 scopus 로고
    • Intracellular compartmentation, structure and function of creatine kinase isoenzymes in tissues with high and fluctuating energy demands: The "phosphocreatine circuit" for cellular energy homeostasis
    • Wallimann, T., M. Wyss, D. Brdiczka, K. Nicolay, and H. M. Eppenberger. Intracellular compartmentation, structure and function of creatine kinase isoenzymes in tissues with high and fluctuating energy demands: the "phosphocreatine circuit" for cellular energy homeostasis. Biochem. J. 281: 21-40, 1992.
    • (1992) Biochem. J. , vol.281 , pp. 21-40
    • Wallimann, T.1    Wyss, M.2    Brdiczka, D.3    Nicolay, K.4    Eppenberger, H.M.5
  • 34
    • 0026698727 scopus 로고
    • Mitochondrial creatine kinase: A key enzyme of aerobic energy metabolism
    • Wyss, M., J. Smeitink, R. A. Wevers, and T. Wallimann. Mitochondrial creatine kinase: a key enzyme of aerobic energy metabolism. Biochim. Biophys. Acta 1102: 119-166, 1992.
    • (1992) Biochim. Biophys. Acta , vol.1102 , pp. 119-166
    • Wyss, M.1    Smeitink, J.2    Wevers, R.A.3    Wallimann, T.4
  • 36
    • 0031007730 scopus 로고    scopus 로고
    • Mitochondrial response to heart rate steps in isolated rabbit heart is slowed after myocardial stunning
    • Zuurbier, C. J., and J. H. G. M. van Beek. Mitochondrial response to heart rate steps in isolated rabbit heart is slowed after myocardial stunning. Circ. Res. 81: 69-75, 1997.
    • (1997) Circ. Res. , vol.81 , pp. 69-75
    • Zuurbier, C.J.1    Van Beek, J.H.G.M.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.