Contribution of the PI 3-kinase/Akt survival pathway toward osmotic preconditioning

被引:0
作者
Viktor Pastukh
Craig Ricci
Viktoriya Solodushko
Mahmood Mozaffari
Stephen W. Schaffer
机构
[1] Maxcillofacial Pathology,Medical College of Georgia, Department of Oral Biology
[2] Maxcillofacial Pathology,Medical College of Georgia, Department of Oral Biology
[3] University of South Alabama,School of Medicine, Department of Pharmacology
来源
Molecular and Cellular Biochemistry | 2005年 / 269卷
关键词
preconditioning; osmotic stress; taurine; Akt; Bcl-2 family; apoptosis; hypoxia;
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摘要
Osmolytes are rapidly lost from the ischemic heart, an effect thought to benefit the heart by reducing the osmotic load. However, the observation that chronic lowering of one of the prominent osmolytes, taurine, is more beneficial to the ischemic heart than acute taurine loss suggests that osmotic stress may benefit the ischemic heart through multiple mechanisms. The present study examines the possibility that chronic osmotic stress preconditions the heart in part by stimulating a cardioprotective, osmotic-linked signaling pathway. Hyperosmotic stress was produced by treating rat neonatal cardiomyocytes during the pre-hypoxic period with either the taurine depleting agent, #x003B2;-alanine (5 mM), or with medium containing 25 mM mannitol. The cells were then subjected to chemical hypoxia in medium containing 3 mM Amytal and 10 mM deoxyglucose but lacking #x003B2;-alanine and mannitol. Cells that had been pretreated with either 5 mM #x003B2;-alanine or 25 mM mannitol exhibited resistance against hypoxia-induced apoptosis and necrosis. Associated with the osmotically preconditioned state was the activation of Akt and the inactivation of the pro-apoptotic factor, Bad, both events blocked by the inhibition of PI 3-kinase. However, preconditioning the cardiomyocyte with mannitol had no effect on the generation of free radicals during the hypoxic period. Osmotic stress also promoted the upregulation of the anti-apoptotic factor, Bcl-2. Since inhibition of PI 3-kinase with Wortmannin also prevents osmotic-mediated cardioprotection, we conclude that hyperosmotic-mediated activation of the PI 3-kinase/Akt pathway contributes to osmotic preconditioning. (Mol Cell Biochem 269: 59–67, 2005)
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页码:59 / 67
页数:8
相关论文
共 120 条
[1]  
Cohen MV(2000)Ischemic preconditioning: From adenosine receptor to K Annu Rev Physiol 62 79-109
[2]  
Baines CP(2000) channel Circ Res 87 845-855
[3]  
Downey JM(1986)Myocardial K Circulation 74 1124-1136
[4]  
O’Rourke B(2001) channels in preconditioning J Mol Cell Cardiol 33 831-834
[5]  
Murry CE(1993)Preconditioning with ischemia: A delay of lethal cell injury in ischemic myocardium Cardiovasc Res 27 1555-1563
[6]  
Jennings RB(1999): Mitochondrial K Physiol Rev 48 331-340
[7]  
Reimer KA(1976) channel opening is important during index ischemia and following myocardial reperfusion in ischemic preconditioned rat hearts Proc Soc Exp Biol Med 151 677-683
[8]  
Fryer RM(1981)Myocardial oedema: A preventable cause of reperfusion injury? Circ Res 49 364-381
[9]  
Hsu AK(1992)Hyperosmotic pretreatment reduces infarct size in the rat heart Cardiovasc Res 76 893-896
[10]  
Gross GJ(1985)Reduction of experimental myocardial infarct size with hyperosmotic mannitol Basic Res Cardiol 80 251-259