首页> 美国卫生研究院文献>The Journal of Biological Chemistry >AMP-activated Protein Kinase α2 and E2F1 Transcription Factor Mediate Doxorubicin-induced Cytotoxicity by Forming a Positive Signal Loop in Mouse Embryonic Fibroblasts and Non-carcinoma Cells
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AMP-activated Protein Kinase α2 and E2F1 Transcription Factor Mediate Doxorubicin-induced Cytotoxicity by Forming a Positive Signal Loop in Mouse Embryonic Fibroblasts and Non-carcinoma Cells

机译:AMP激活的蛋白激酶α2和E2F1转录因子通过在小鼠胚胎成纤维细胞和非癌细胞中形成正信号回路来介导阿霉素诱导的细胞毒性。

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摘要

Doxorubicin is one of the most widely used anti-cancer drugs, but its clinical application is compromised by severe adverse effects in different organs including cardiotoxicity. In the present study we explored mechanisms of doxorubicin-induced cytotoxicity by revealing a novel role for the AMP-activated protein kinase α2 (AMPKα2) in mouse embryonic fibroblasts (MEFs). Doxorubicin robustly induced the expression of AMPKα2 in MEFs but slightly reduced AMPKα1 expression. Our data support the previous notion that AMPKα1 harbors survival properties under doxorubicin treatment. In contrast, analyses of Ampkα2−/− MEFs, gene knockdown of AMPKα2 by shRNA, and inhibition of AMPKα2 activity with an AMPK inhibitor indicated that AMPKα2 functions as a pro-apoptotic molecule under doxorubicin treatment. Doxorubicin induced AMPKα2 at the transcription level via E2F1, a transcription factor that regulates apoptosis in response to DNA damage. E2F1 directly transactivated the Ampkα2 gene promoter. In turn, AMPKα2 significantly contributed to stabilization and activation of E2F1 by doxorubicin, forming a positive signal amplification loop. AMPKα2 directly interacted with and phosphorylated E2F1. This signal loop was also detected in H9c2, C2C12, and ECV (human epithelial cells) cells as well as mouse liver under doxorubicin treatment. Resveratrol, which has been suggested to attenuate doxorubicin-induced cytotoxicity, significantly blocked induction of AMPKα2 and E2F1 by doxorubicin, leading to protection of these cells. This signal loop appears to be non-carcinoma-specific because AMPKα2 was not induced by doxorubicin in five different tested cancer cell lines. These results suggest that AMPKα2 may serve as a novel target for alleviating the cytotoxicity of doxorubicin.
机译:阿霉素是使用最广泛的抗癌药物之一,但其临床应用受到包括心脏毒性在内的不同器官的严重不良影响。在本研究中,我们通过揭示AMP激活的蛋白激酶α2(AMPKα2)在小鼠胚胎成纤维细胞(MEFs)中的新作用,探索了阿霉素诱导的细胞毒性机制。阿霉素强烈诱导MEF中AMPKα2的表达,但AMPKα1的表达略有降低。我们的数据支持以前的观点,即AMPKα1在阿霉素治疗下具有生存特性。相比之下,对Ampkα2-/- MEF的分析,shRNA对AMPKα2的基因敲低以及对AMPK抑制剂的AMPKα2活性的抑制作用表明AMPKα2在阿霉素处理下作为促凋亡分子起作用。阿霉素通过E2F1在转录水平上诱导AMPKα2,E2F1是一种响应DNA损伤而调节细胞凋亡的转录因子。 E2F1直接激活Ampkα2基因启动子。反过来,AMPKα2显着促进了阿霉素对E2F1的稳定和激活,形成了正信号放大环。 AMPKα2直接与E2F1相互作用并使其磷酸化。在H9c2,C2C12和ECV(人上皮细胞)细胞以及经过阿霉素处理的小鼠肝脏中也检测到了该信号环。已经提出白藜芦醇可以减弱阿霉素诱导的细胞毒性,它可以显着阻断阿霉素对AMPKα2和E2F1的诱导,从而保护这些细胞。该信号回路似乎是非癌特异性的,因为在五个不同的测试癌细胞系中,AMPKα2未被阿霉素诱导。这些结果表明,AMPKα2可以作为减轻阿霉素细胞毒性的新靶标。

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