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PKCε promotes oncogenic functions of ATF2 in the nucleus while blocking its apoptotic function at mitochondria

机译:PKCε促进ATF2在细胞核中的致癌功能,同时阻断其在线粒体的凋亡功能。

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摘要

The transcription factor ATF2 elicits oncogenic activities in melanoma and tumor suppressor activities in nonmalignant skin cancer. Here, we identify that ATF2 tumor suppressor function is determined by its ability to localize at the mitochondria, where it alters membrane permeability following genotoxic stress. The ability of ATF2 to reach the mitochondria is determined by PKCε, which directs ATF2 nuclear localization. Genotoxic stress attenuates PKCε effect on ATF2; enables ATF2 nuclear export and localization at the mitochondria, where it perturbs the HK1-VDAC1 complex; increases mitochondrial permeability; and promotes apoptosis. Significantly, high levels of PKCε, as seen in melanoma cells, block ATF2 nuclear export and function at the mitochondria, thereby attenuating apoptosis following exposure to genotoxic stress. In melanoma tumor samples, high PKCε levels associate with poor prognosis. Overall, our findings provide the framework for understanding how subcellular localization enables ATF2 oncogenic or tumor suppressor functions.
机译:转录因子ATF2在黑色素瘤中引发致癌活性,在非恶性皮肤癌中引起肿瘤抑制活性。在这里,我们确定,ATF2抑癌功能是由其位于线粒体的能力决定的,线粒体在遗传毒性应激后会改变膜的通透性。 ATF2到达线粒体的能力由PKCε决定,后者指导ATF2核定位。基因毒性应激减弱了PKCε对ATF2的作用;使ATF2核出口并定位于线粒体,从而干扰HK1-VDAC1复合体;增加线粒体通透性;并促进细胞凋亡显着地,如在黑色素瘤细胞中所见,高水平的PKCε阻断了ATF2的核输出并在线粒体中起作用,从而在暴露于遗传毒性应激后减弱了细胞凋亡。在黑色素瘤肿瘤样品中,高PKCε水平与不良预后相关。总体而言,我们的发现为理解亚细胞定位如何使ATF2致癌或抑癌功能提供了框架。

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