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首页> 外文期刊>Cell death & disease. >JNK modulates FOXO3a for the expression of the mitochondrial death and mitophagy marker BNIP3 in pathological hypertrophy and in heart failure
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JNK modulates FOXO3a for the expression of the mitochondrial death and mitophagy marker BNIP3 in pathological hypertrophy and in heart failure

机译:JNK调节FOXO3a在病理性肥大和心力衰竭中线粒体死亡和线粒体标记BNIP3的表达

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Bcl-2 E1B 19-KDa interacting protein 3 (BNIP3) is a mitochondrial death and mitophagy marker, which is involved in inducing cardiac remodeling post myocardial infarction. In this study, we show that BNIP3 expression increases in stressed cardiomyocytes in vitro and in response to pressure overload in vivo, and that its transcription is directly related to JNK activity. BNIP3 expression gradually increased in the first weeks after pressure overload and peaked at the heart failure stage. Ultrastructurally, the mitochondrial area was inversely proportional to BNIP3 expression. Both JNK and AKT activities increased with pressure overload; however, JNK signaling dominated over AKT signaling for the activation of the transcription factor FOXO3a and for the transcription of its effector, BNIP3. 3-methyladenine attenuated JNK signaling and significantly decreased BNIP3 expression and reversed cardiac remodeling in heart failure. Ultrastructurally, the mitochondrial area was significantly increased in the 3-methyladenine group compared with placebo. Moreover, adenoviral gene delivery of dominant negative JNK in a rat model of pressure overload hypertrophy abolished the increase in BNIP3 expression in response to pressure overload. These results suggest that JNK signaling is a critical modulator of the transcription factor FOXO3a driving the expression of its effector, BNIP3, in heart failure and that JNK, through BNIP3, induces mitochondrial apoptosis and mitophagy.. ? 2012 Macmillan Publishers Limited
机译:Bcl-2 E1B 19-KDa相互作用蛋白3(BNIP3)是线粒体死亡和线粒体标志物,参与诱导心肌梗死后的心脏重塑。在这项研究中,我们表明BNIP3的表达增加体外压力心肌细胞和体内压力超负荷的响应,其转录与JNK活性直接相关。 BNIP3表达在压力超负荷后的最初几周逐渐增加,并在心力衰竭阶段达到高峰。在超微结构中,线粒体面积与BNIP3表达成反比。随着压力超载,JNK和AKT活性均增加;然而,JNK信号转导在转录因子FOXO3a的激活及其效应子BNIP3的转录方面优于AKT信号。在心力衰竭中,3-甲基腺嘌呤减弱了JNK信号传导并显着降低了BNIP3表达并逆转了心脏重塑。在超微结构上,与安慰剂相比,3-甲基腺嘌呤组的线粒体面积显着增加。此外,在压力超负荷肥大的大鼠模型中,显性负性JNK的腺病毒基因传递消除了对压力超负荷的BNIP3表达增加。这些结果表明,JNK信号传导是转录因子FOXO3a在心力衰竭中驱动其效应物BNIP3表达的关键调节剂,并且JNK通过BNIP3诱导线粒体凋亡和线粒体。 2012 Macmillan Publishers Limited

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