Lee Sun-Young, Choi Hyun Chul, Choe Yun-Jeong, Shin Seok Joon, Lee Sug Hyung, Kim Ho-Shik
Department of Biochemistry, College of Medicine, The Catholic University of Korea, Seoul 137-701, Republic of Korea.
Department of Internal Medicine, College of Medicine, The Catholic University of Korea, Seoul 137-701, Republic of Korea.
Int J Oncol. 2014 Aug;45(2):675-82. doi: 10.3892/ijo.2014.2463. Epub 2014 May 26.
Nutlin-3 which occupies the p53 binding pocket in HDM2, has been reported to activate apoptosis through both the transcriptional activity-dependent and -independent programs of p53. Transcription-independent apoptosis by nutlin-3 is triggered by p53 which is translocated to mitochondria. However, we previously demonstrated that the nutlin-3-induced mitochondrial translocation of p53 stimulates ERK1/2 activation, an anti-apoptosis signal, via mitochondrial ROS generation. We report on how nutlin-3-stimulated ERK1/2 activity inhibits p53-induced apoptosis. Among the anti-apoptotic BCL2 family proteins, BCL2A1 expression was increased by nutlin-3 at both the mRNA and protein levels, and this increase was prevented by the inhibition of ERK1/2. TEMPO, a ROS scavenger, and PFT-μ , a blocker of the mitochondrial translocation of p53, also inhibited BCL2A1 expression as well as ERK1/2 phosphorylation. In addition, nutlin-3 stimulated phosphorylation of ELK1, which was prevented by all compounds that inhibited nutlin-3-induced ERK1/2 such as U0126, PFT-μ and TEMPO. Moreover, an increase in BCL2A1 expression was weakened by the knockdown of ELK1. Finally, nutlin-3-induced apoptosis was found to be potentiated by the knockdown of BCL2A1, as demonstrated by an increase of in hypo-diploidic cells and Annexin V-positive cells. Parallel to the increase in apoptotic cells, the knockdown of BCL2A1 augmented the cleavage of poly(ADP-ribose) polymerase-1. It is noteworthy that the augmented levels of apoptosis induced by the knockdown of BCL2A1 were comparable to those of apoptosis induced by U0126. Collectively, these results suggest that nutlin-3-activated ERK1/2 may stimulate the transcription of BCL2A1 via the activation of ELK1, and BCL2A1 expression may contribute to the inhibitory effect of ERK1/2 on nutlin-3-induced apoptosis, thereby constituting a negative feedback loop of p53-induced apoptosis.
Nutlin-3可占据HDM2中的p53结合口袋,据报道它可通过p53的转录活性依赖性和非依赖性程序激活细胞凋亡。Nutlin-3诱导的非转录依赖性细胞凋亡由转位至线粒体的p53触发。然而,我们之前证明,Nutlin-3诱导的p53线粒体转位通过线粒体ROS生成刺激ERK1/2激活,这是一种抗凋亡信号。我们报告了Nutlin-3刺激的ERK1/2活性如何抑制p53诱导的细胞凋亡。在抗凋亡BCL2家族蛋白中,Nutlin-3在mRNA和蛋白水平均增加了BCL2A1的表达,而这种增加可被ERK1/2的抑制所阻止。ROS清除剂TEMPO和p53线粒体转位阻滞剂PFT-μ也抑制了BCL2A1的表达以及ERK1/2磷酸化。此外,Nutlin-3刺激了ELK1的磷酸化,而所有抑制Nutlin-3诱导的ERK1/2的化合物(如U0126、PFT-μ和TEMPO)均可阻止这种磷酸化。此外,ELK1的敲低削弱了BCL2A1表达的增加。最后,如通过亚二倍体细胞和膜联蛋白V阳性细胞的增加所证明的,BCL2A1的敲低增强了Nutlin-3诱导的细胞凋亡。与凋亡细胞的增加平行,BCL2A1的敲低增强了聚(ADP-核糖)聚合酶-1的切割。值得注意的是,BCL2A1敲低诱导的凋亡水平增加与U0126诱导的凋亡水平相当。总体而言,这些结果表明,Nutlin-3激活的ERK1/2可能通过激活ELK1刺激BCL2A1的转录,并且BCL2A1表达可能有助于ERK1/2对Nutlin-3诱导的细胞凋亡的抑制作用,从而构成p53诱导的细胞凋亡的负反馈环。