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1
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0022970945
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Preconditioning with ischemia: a delay of lethal cell injury in ischemic myocardium
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Murry C.E., Jennings R.B., and Reimer K.A. Preconditioning with ischemia: a delay of lethal cell injury in ischemic myocardium. Circulation 74 (1986) 1124-1136
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Murry, C.E.1
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2
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42049108814
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Mechanisms underlying acute protection from cardiac ischemia-reperfusion injury
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Murphy E., and Steenbergen C. Mechanisms underlying acute protection from cardiac ischemia-reperfusion injury. Physiol Rev 88 (2008) 581-609
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Physiol Rev
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Murphy, E.1
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3
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0033037098
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ATP-sensitive potassium channels: a model of heteromultimeric potassium channel/receptor assemblies
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Seino S. ATP-sensitive potassium channels: a model of heteromultimeric potassium channel/receptor assemblies. Annu Rev Physiol 61 (1999) 337-362
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Annu Rev Physiol
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Seino, S.1
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5
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0035895255
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A mechanism for ATP-sensitive potassium channel diversity: Functional coassembly of two pore-forming subunits
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Cui Y., Giblin J.P., Clapp L.H., and Tinker A. A mechanism for ATP-sensitive potassium channel diversity: Functional coassembly of two pore-forming subunits. Proc Natl Acad Sci U S A 98 (2001) 729-734
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Proc Natl Acad Sci U S A
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Cui, Y.1
Giblin, J.P.2
Clapp, L.H.3
Tinker, A.4
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6
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0035912761
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Adenylate kinase phosphotransfer communicates cellular energetic signals to ATP-sensitive potassium channels
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Carrasco A.J., Dzeja P.P., Alekseev A.E., Pucar D., Zingman L.V., Abraham M.R., Hodgson D., Bienengraeber M., Puceat M., Janssen E., Wieringa B., et al. Adenylate kinase phosphotransfer communicates cellular energetic signals to ATP-sensitive potassium channels. Proc Natl Acad Sci U S A 98 (2001) 7623-7628
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Proc Natl Acad Sci U S A
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Carrasco, A.J.1
Dzeja, P.P.2
Alekseev, A.E.3
Pucar, D.4
Zingman, L.V.5
Abraham, M.R.6
Hodgson, D.7
Bienengraeber, M.8
Puceat, M.9
Janssen, E.10
Wieringa, B.11
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7
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0036369727
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Creatine kinase is physically associated with the cardiac ATP-sensitive K+ channel in vivo
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Crawford R.M., Ranki H.J., Botting C.H., Budas G.R., and Jovanović A. Creatine kinase is physically associated with the cardiac ATP-sensitive K+ channel in vivo. FASEB J 16 (2002) 102-104
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Crawford, R.M.1
Ranki, H.J.2
Botting, C.H.3
Budas, G.R.4
Jovanović, A.5
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8
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0036682646
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M-LDH serves as a sarcolemmal K(ATP) channel subunit essential for cell protection against ischemia
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Crawford R.M., Budas G.R., Jovanović S., Ranki H.J., Wilson T.J., Davies A.M., and Jovanović A. M-LDH serves as a sarcolemmal K(ATP) channel subunit essential for cell protection against ischemia. EMBO J 21 (2002) 3936-3948
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EMBO J
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Crawford, R.M.1
Budas, G.R.2
Jovanović, S.3
Ranki, H.J.4
Wilson, T.J.5
Davies, A.M.6
Jovanović, A.7
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9
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29244434429
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Glyceraldehyde 3-phosphate dehydrogenase serves as an accessory protein of the cardiac sarcolemmal K(ATP) channel
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Jovanović S., Du Q., Crawford R.M., Budas G.R., Stagljar I., and Jovanović A. Glyceraldehyde 3-phosphate dehydrogenase serves as an accessory protein of the cardiac sarcolemmal K(ATP) channel. EMBO Rep 6 (2005) 848-852
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(2005)
EMBO Rep
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Jovanović, S.1
Du, Q.2
Crawford, R.M.3
Budas, G.R.4
Stagljar, I.5
Jovanović, A.6
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10
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31944446983
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The glycolytic enzymes, glyceraldehyde-3-phosphate dehydrogenase, triose-phosphate isomerase, and pyruvate kinase are components of the K(ATP) channel macromolecular complex and regulate its function
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Dhar-Chowdhury P., Harrell M.D., Han S.Y., Jankowska D., Parachuru L., Morrissey A., Srivastava S., Liu W., Malester B., Yoshida H., and Coetzee W.A. The glycolytic enzymes, glyceraldehyde-3-phosphate dehydrogenase, triose-phosphate isomerase, and pyruvate kinase are components of the K(ATP) channel macromolecular complex and regulate its function. J Biol Chem 281 (2005) 38464-38470
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J Biol Chem
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Dhar-Chowdhury, P.1
Harrell, M.D.2
Han, S.Y.3
Jankowska, D.4
Parachuru, L.5
Morrissey, A.6
Srivastava, S.7
Liu, W.8
Malester, B.9
Yoshida, H.10
Coetzee, W.A.11
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12
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0036179325
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Role of sarcolemmal K(ATP) channels in cardioprotection against ischemia/reperfusion injury in mice
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Suzuki M., Sasaki N., Miki T., Sakamoto N., Ohmoto-Sekine Y., Tamagawa M., Seino S., Marbán E., and Nakaya H. Role of sarcolemmal K(ATP) channels in cardioprotection against ischemia/reperfusion injury in mice. J Clin Invest 109 (2002) 509-516
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J Clin Invest
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Suzuki, M.1
Sasaki, N.2
Miki, T.3
Sakamoto, N.4
Ohmoto-Sekine, Y.5
Tamagawa, M.6
Seino, S.7
Marbán, E.8
Nakaya, H.9
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13
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33745820578
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Overexpression of SUR2A generates a cardiac phenotype resistant to ischaemia
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The study providing most of the results described in this review.
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Du Q., Jovanović S., Clelland A., Sukhodub A., Budas G.R., Phelan K., Murray-Tait V., Malone L., and Jovanović A. Overexpression of SUR2A generates a cardiac phenotype resistant to ischaemia. FASEB J 20 (2006) 1131-1141. The study providing most of the results described in this review.
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FASEB J
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Du, Q.1
Jovanović, S.2
Clelland, A.3
Sukhodub, A.4
Budas, G.R.5
Phelan, K.6
Murray-Tait, V.7
Malone, L.8
Jovanović, A.9
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14
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34548863112
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Mice lacking sulfonylurea receptor 2 (SUR2) ATP-sensitive potassium channels are resistant to acute cardiovascular stress
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A study suggesting that cardioprotection is conferred by a lack of SUR2 in the heart.
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Stoller D., Kakkar R., Smelley M., Chalupsky K., Earley J.U., Shi N.Q., Makielski J.C., and McNally E.M. Mice lacking sulfonylurea receptor 2 (SUR2) ATP-sensitive potassium channels are resistant to acute cardiovascular stress. J Mol Cell Cardiol 43 (2007) 445-454. A study suggesting that cardioprotection is conferred by a lack of SUR2 in the heart.
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(2007)
J Mol Cell Cardiol
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, pp. 445-454
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Stoller, D.1
Kakkar, R.2
Smelley, M.3
Chalupsky, K.4
Earley, J.U.5
Shi, N.Q.6
Makielski, J.C.7
McNally, E.M.8
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15
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41649094871
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Role of sulfonylurea receptor type 1 subunits of ATP-sensitive potassium channels in myocardial ischemia/reperfusion injury
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Elrod J.W., Harrell M., Flagg T.P., Gundewar S., Magnuson M.A., Nichols C.G., Coetzee W.A., and Lefer D.J. Role of sulfonylurea receptor type 1 subunits of ATP-sensitive potassium channels in myocardial ischemia/reperfusion injury. Circulation 117 (2008) 1405-1413
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Circulation
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Elrod, J.W.1
Harrell, M.2
Flagg, T.P.3
Gundewar, S.4
Magnuson, M.A.5
Nichols, C.G.6
Coetzee, W.A.7
Lefer, D.J.8
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20
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0043234192
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+ channels
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+ channels. J Biol Chem 278 (2003) 31444-31455
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J Biol Chem
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Crawford, R.M.1
Jovanović, S.2
Budas, G.R.3
Davies, A.M.4
Lad, H.5
Wenger, R.H.6
Robertson, K.A.7
Roy, D.J.8
Ranki, H.J.9
Jovanović, A.10
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23
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33845384841
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+ channels
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+ channels. J Cell Physiol 210 (2007) 224-236
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(2007)
J Cell Physiol
, vol.210
, pp. 224-236
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-
Sukhodub, A.1
Jovanović, S.2
Du, Q.3
Budas, G.R.4
Clelland, A.5
Shen, M.6
Sakamoto, K.7
Tian, R.8
Jovanović, A.9
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25
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0029758261
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Reversal of the ATP-liganded state of ATP-sensitive K+ channels by adenylate kinase activity
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Elvir-Mairena J.R., Jovanović A., Gomez L.A., Alekseev A.E., and Terzic A. Reversal of the ATP-liganded state of ATP-sensitive K+ channels by adenylate kinase activity. J Biol Chem 271 (1996) 31903-31908
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(1996)
J Biol Chem
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Elvir-Mairena, J.R.1
Jovanović, A.2
Gomez, L.A.3
Alekseev, A.E.4
Terzic, A.5
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26
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12744261218
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+ channels via 1,3-bisphosphoglycerate: a novel link between cardiac membrane excitability and glucose metabolism
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+ channels via 1,3-bisphosphoglycerate: a novel link between cardiac membrane excitability and glucose metabolism. Diabetes 54 (2005) 383-393
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(2005)
Diabetes
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Jovanović, S.1
Jovanović, A.2
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27
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12144290256
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ABCC9 mutations identified in human dilated cardiomyopathy disrupt catalytic KATP channel gating
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Bienengraeber M., Olson T.M., Selivanov V.A., Kathmann E.C., O'Cochlain F., Gao F., Karger A.B., Ballew J.D., Hodgson D.M., Zingman L.V., Pang Y.P., et al. ABCC9 mutations identified in human dilated cardiomyopathy disrupt catalytic KATP channel gating. Nat Genet 36 (2004) 382-387
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(2004)
Nat Genet
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Bienengraeber, M.1
Olson, T.M.2
Selivanov, V.A.3
Kathmann, E.C.4
O'Cochlain, F.5
Gao, F.6
Karger, A.B.7
Ballew, J.D.8
Hodgson, D.M.9
Zingman, L.V.10
Pang, Y.P.11
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28
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0032514610
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+ channel subunits confer resistance towards chemical hypoxia-reoxygenation injury
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+ channel subunits confer resistance towards chemical hypoxia-reoxygenation injury. Circulation 98 (1998) 1548-1555
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(1998)
Circulation
, vol.98
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Jovanović, A.1
Jovanović, S.2
Lorenz, E.3
Terzic, A.4
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29
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49649092231
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The creatine kinase phosphotransfer network: thermodynamic and kinetic considerations, the impact of the mitochondrial outer membrane and modelling approaches
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Saks V., Kaambre T., Guzun R., Anmann T., Sikk P., Schlattner U., Wallimann T., Aliev M., and Vendelin M. The creatine kinase phosphotransfer network: thermodynamic and kinetic considerations, the impact of the mitochondrial outer membrane and modelling approaches. Subcell Biochem 46 (2007) 27-65
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(2007)
Subcell Biochem
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Saks, V.1
Kaambre, T.2
Guzun, R.3
Anmann, T.4
Sikk, P.5
Schlattner, U.6
Wallimann, T.7
Aliev, M.8
Vendelin, M.9
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