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Sodium nitroprusside activates p38 mitogen activated protein kinase through a cGMP/PKG independent mechanism

机译:硝普钠通过cGMP / PKG独立机制激活p38丝裂原活化蛋白激酶

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The objective of this study was to understand the mechanism of action of nitric oxide (NO) in the heart by determining whether nitric oxide (NO) released from sodium nitroprusside (SNP) induces p38 mitogen activated protein kinase (p38 MAPK) phosphorylation and whether this is mediated through a cyclic GMP (cGMP)/protein kinase G (PKG) pathway. p38 MAPK activation was examined by Western blotting of whole cell lysates of embryonic chick cardiomyocytes with antibodies specific to the native or phosphorylated forms of p38 MAPK. SNP, 1 mM, which released significant amounts of NO as determined by Griess reaction, induced p38 MAPK phosphorylation that was apparent within 10 min, was significantly (p < 0.05) greater than control at 60 min and remained higher than initial levels up to the 4 h end point of the experiment. This could not be attributed to hydrogen peroxide release from SNP as catalase did not affect SNP-induced P38 MAPK phosphorylation. S13202190, a relatively selective inhibitor of p38 MAPK, mainly p38 alpha MAPK, inhibited SNP-induced p38 MAPK phosphorylation. SNP-induced p38 MAPK phosphorylation was not altered by pre-treatment with the PKG inhibitor KT 5823 or by ODQ a potent and selective inhibitor of NO-sensitive guanylyl cyclase. p38 MAPK phosphorylation was not induced by the cell permeable cGMP analogue, 8-Br-cGMP. In summary, considering that new therapeutic strategies aimed at NO and p38 MAPK are being considered for myocardial injury and heart failure, these data demonstrate that SNP induces p38 MAPK phosphorylation through a pathway that is independent of NO-induced activation of cGMP/PKG pathways and suggest that non cGMP/PKG regulatory proteins leading to p38 MAPK phosphorylation merit further investigation to address this therapeutic target. (c) 2007 Published by Elsevier Inc.
机译:这项研究的目的是通过确定硝普钠(SNP)释放的一氧化氮(NO)是否诱导p38丝裂原活化蛋白激酶(p38 MAPK)磷酸化来了解一氧化氮(NO)在心脏中的作用机理。通过循环GMP(cGMP)/蛋白激酶G(PKG)途径介导。通过用对p38 MAPK的天然或磷酸化形式具有特异性的抗体对雏鸡心肌细胞的全细胞裂解物进行蛋白质印迹来检查p38 MAPK的活化。根据Griess反应确定,SNP 1 mM释放大量NO,诱导p38 MAPK磷酸化在10分钟内明显,在60分钟时显着(p <0.05)高于对照,并一直高于初始水平。实验的4小时终点。这不能归因于过氧化氢从SNP释放出来,因为过氧化氢酶不影响SNP诱导的P38 MAPK磷酸化。 S13202190是一种相对选择性的p38 MAPK抑制剂,主要是p38αMAPK,可抑制SNP诱导的p38 MAPK磷酸化。 SNP诱导的p38 MAPK磷酸化未通过PKG抑制剂KT 5823预处理或ODQ(一种NO敏感的鸟苷酸环化酶的强效和选择性抑制剂)进行了预处理。细胞渗透性cGMP类似物8-Br-cGMP不会诱导p38 MAPK磷酸化。总之,考虑到针对NO和p38 MAPK的新治疗策略正在考虑用于心肌损伤和心力衰竭,这些数据表明SNP通过一种途径诱导p38 MAPK磷酸化,该途径独立于NO诱导的cGMP / PKG途径的激活,并且提示导致p38 MAPK磷酸化的非cGMP / PKG调节蛋白值得进一步研究以解决这一治疗目标。 (c)2007年由Elsevier Inc.发布。

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