Changes in HSP70 and P53 expression are related to the pattern of electromechanical alterations in rat cardiomyocytes during simulated ischemia

被引:17
作者
Aline Laubriet
Elisabeth Fantini
Mahfoud Assem
Catherine Cordelet
Jean-Raymond Teyssier
Pierre Athias
Luc Rochette
机构
[1] University of Burgundy,Laboratory of Cardiovascular Pysiopathology and Pharmacology, Faculty of Medicine
[2] University Hospital Center,Institute of Cardiovascular Research
[3] INRA,Lipid and Nutrition Unit
来源
Molecular and Cellular Biochemistry | 2001年 / 220卷
关键词
cell culture; rat cardiomyocytes; cell electrophysiology; cell contractions; HSP 70; P53; gene expression; simulated ischemia; reoxygenation;
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摘要
The objective was to relate the response of the HSP70 and P53 genes to the cessation and the recovery of cardiac muscle cell functions when submitted to ischemia-reperfusion. We have measured the electromechanical activity, the released enzymes and HSP70 RNA and protein levels in cultured neonatal rat cardiomyocytes (CM) in a substrate-free, hypoxia-reoxygenation model of ischemia-reperfusion. In parallel the expression of the two genes P53 (the key apoptosis regulator gene) and P21/Waf1 (the P53 target gene) has been evaluated. The functional recovery during post-'ischemic' reoxygenation was associated with an overexpression of HSP70 and P53 lasting until the functional parameters reverted back to the normal, prehypoxic values. In contrast, extending the substrate-free hypoxic treatment worsens the dysfunction of the cardiac muscle cell and, in these conditions, reoxygenation failed to restore cell functions and to activate HSP70. Finally, in the conditions of reversible 'ischemic' cell injury, an early and transitory activation of P53 was associated with the functional recovering process of the CM submitted to simulated ischemia. These observations are suggestive of a contributive role of both HSP70 and P53 to a cytoprotective program activated by reoxygenation in post-'ischemic' CM.
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页码:77 / 86
页数:9
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共 184 条
[1]
Knowlton AA(1995)The role of heat shock proteins in the heart J Mol Cell Cardiol 27 121-131
[2]
Currie RW(1988)Heat-shock response is associated with enhanced postischemic ventricular recovery Circ Res 63 543-549
[3]
Karmazyn M(1994)Myocardial heat shock gene expression in pigs is dependent on superoxide anion generated at reperfusion Shock 1 31-35
[4]
Kloc M(1992)Stress proteins and myocardial protection J Mol Cell Cardiol 24 113-124
[5]
Mailer K(1990)Oxygen and substrate deprivation on isolated rat cardiac myocytes: Temporal relationship between electromechanical and biochemical consequences Can J Physiol Pharmacol 68 1148-1156
[6]
Schoeniger LO(2000)Upregulation of p53 protein in rat heart subjected to a transient occlusion of the coronary artery followed by reperfusion Jpn J Physiol 50 159-162
[7]
Curtis W(1994)Hypoxia induces accumulation of P53 protein, but activation of G1-phase checkpoint by low-oxygen conditions is independent of P53 status Mol Cell Biol 14 6264-6277
[8]
Esnaola NF(1997)P53 and the hypoxia-induced apoptosis of cultured neonatal rat cardiac myocytes J Clin Invest 99 2635-3643
[9]
Beck SC(1999)Hypoxia-activated apoptosis of cardiac myocytes requires reoxygenation or a pH shift and is independent of p53 J Clin Invest 104 239-252
[10]
Gardner T(2000)Unresolved issues regarding the role of apoptosis in the pathogenesis of ischemic injury and heart failure J Mol Cell Cardiol 32 711-724