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PI3K/Akt与MAPK信号通路在DNA损伤药物诱导的细胞凋亡中的相互作用。

Interplay between PI3K/Akt and MAPK signaling pathways in DNA-damaging drug-induced apoptosis.

作者信息

Lee Eung-Ryoung, Kim Jang-Yong, Kang Yong-Jin, Ahn Jae-Yeon, Kim Jung-Hyun, Kim Bong-Woo, Choi Hye-Yeon, Jeong Mi-Young, Cho Ssang-Goo

机构信息

Department of Animal Biotechnology and Bio/Molecular Informatics Center, BORC/IBST, and RCTCP, Konkuk University, Seoul, 143-701, South Korea.

出版信息

Biochim Biophys Acta. 2006 Sep;1763(9):958-68. doi: 10.1016/j.bbamcr.2006.06.006. Epub 2006 Jun 27.

Abstract

In order to elucidate the role of the mitogen-activated protein kinases, including JNK, p38 MAPK and ERK, as well as the survival-associated PI3K/Akt signaling pathway, in the response to chemotherapy, we have conducted a comparative study regarding the effects of doxorubicin on these pathways. Doxorubicin was determined to elicit the apoptosis of NIH3T3 cells in a dose-dependent manner. Prior to cell death, both Akt and p38 MAPK were transiently activated, and subsequently inactivated almost wholly, whereas ERK and JNK evidenced sustained activations in response to the drug treatment. The inhibition of PI3K/Akt and p38 MAPK both accelerated and enhanced doxorubicin-induced apoptosis and ERK inhibition apparently exerted negative effect on apoptosis. The modulation of PI3K/Akt activation by treatment of LY294002 or expression of Akt mutants such as Akt-DN or Myr-Akt exerted a significant effect on the activation of ERK1/2. We also observed that PI3K/Akt and sustained ERK activation were associated intimately with the etoposide-induced apoptosis. Taken together, our results clearly suggest that the differential regulation of the PI3K/Akt, ERK1/2, and p38 MAPK signaling pathways are crucial in the context of DNA-damaging drug-induced apoptosis, and this has compelled us to propose that the sustained activation of ERK1/2 pathway may be generally involved in the apoptosis induced by anticancer DNA-damaging drugs, including doxorubicin and etoposide.

摘要

为了阐明丝裂原活化蛋白激酶(包括JNK、p38 MAPK和ERK)以及与存活相关的PI3K/Akt信号通路在化疗反应中的作用,我们针对阿霉素对这些通路的影响进行了一项比较研究。已确定阿霉素以剂量依赖性方式引发NIH3T3细胞凋亡。在细胞死亡之前,Akt和p38 MAPK均被短暂激活,随后几乎完全失活,而ERK和JNK在药物处理后表现出持续激活。抑制PI3K/Akt和p38 MAPK均加速并增强了阿霉素诱导的凋亡,而抑制ERK显然对凋亡产生负面影响。用LY294002处理或表达Akt突变体(如Akt-DN或Myr-Akt)对PI3K/Akt激活的调节对ERK1/2的激活产生了显著影响。我们还观察到PI3K/Akt和ERK的持续激活与依托泊苷诱导的凋亡密切相关。综上所述,我们的结果清楚地表明,PI3K/Akt、ERK1/2和p38 MAPK信号通路的差异调节在DNA损伤药物诱导的凋亡过程中至关重要,这促使我们提出ERK1/2通路的持续激活可能普遍参与包括阿霉素和依托泊苷在内的抗癌DNA损伤药物诱导的凋亡。

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