首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Changes in HSP70 and P53 expression are related to the pattern of electromechanical alterations in rat cardiomyocytes during simulated ischemia
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Changes in HSP70 and P53 expression are related to the pattern of electromechanical alterations in rat cardiomyocytes during simulated ischemia

机译:HSP70和P53表达的变化与模拟缺血期间大鼠心肌细胞的机电变化模式有关

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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.
机译:目的是将HSP70和P53基因的反应与缺血再灌注后心肌细胞功能的停止和恢复联系起来。我们已经在无底物,缺氧-再充氧的缺血-再灌注模型中测量了新生大鼠心肌细胞(CM)中的机电活性,释放的酶以及HSP70 RNA和蛋白质水平。并行地,已经评估了两个基因P53(关键的细胞凋亡调节基因)和P21 / Waf1(P53靶基因)的表达。 “缺血”后复氧期间的功能恢复与HSP70和P53的过表达持续存在,直到功能参数恢复至正常的低氧前值。相反,延长无底物的低氧治疗会使心肌细胞的功能障碍恶化,并且在这些情况下,复氧不能恢复细胞功能并激活HSP70。最后,在可逆性“缺血”细胞损伤的情况下,P53的早期和短暂激活与进行模拟缺血的CM的功能恢复过程有关。这些观察结果暗示了HSP70和P53在“缺血性” CM中通过复氧激活的细胞保护程序中的贡献作用。

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