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DAPK2 regulates oxidative stress in cancer cells by preserving mitochondrial function

机译:DAPK2通过保持线粒体功能调节癌细胞中的氧化应激

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Death-associated protein kinase (DAPK) 2 is a serine/threonine kinase that belongs to the DAPK family. Although it shows significant structural differences from DAPK1, the founding member of this protein family, DAPK2 is also thought to be a putative tumour suppressor. Like DAPK1, it has been implicated in programmed cell death, the regulation of autophagy and diverse developmental processes. In contrast to DAPK1, however, few mechanistic studies have been carried out on DAPK2 and the majority of these have made use of tagged DAPK2, which almost invariably leads to overexpression of the protein. As a consequence, physiological roles of this kinase are still poorly understood. Using two genetically distinct cancer cell lines as models, we have identified a new role for DAPK2 in the regulation of mitochondrial integrity. RNA interference-mediated depletion of DAPK2 leads to fundamental metabolic changes, including significantly decreased rate of oxidative phosphorylation in combination with overall destabilised mitochondrial membrane potential. This phenotype is further corroborated by an increase in the production of mitochondrial superoxide anions and increased oxidative stress. This then leads to the activation of classical stress-activated kinases such as ERK, JNK and p38, which is observed on DAPK2 genetic ablation. Interestingly, the generation of oxidative stress is further enhanced on overexpression of a kinase-dead DAPK2 mutant indicating that it is the kinase domain of DAPK2 that is important to maintain mitochondrial integrity and, by inference, for cellular metabolism.
机译:死亡相关蛋白激酶(DAPK)2是一种丝氨酸/苏氨酸激酶,属于DAPK家族。尽管它与DAPK1(该蛋白家族的创始成员)显示出显着的结构差异,但DAPK2也被认为是推定的肿瘤抑制因子。像DAPK1一样,它也与程序性细胞死亡,自噬的调节和多种发育过程有关。但是,与DAPK1相比,对DAPK2进行的机理研究很少,而大多数都利用了标记的DAPK2,这几乎总是导致蛋白质的过表达。结果,对该激酶的生理作用仍知之甚少。使用两个遗传上不同的癌细胞系作为模型,我们确定了DAPK2在调节线粒体完整性中的新作用。 RNA干扰介导的DAPK2耗竭导致基本的代谢变化,包括与整体不稳定的线粒体膜电位结合而明显降低的氧化磷酸化速率。线粒体超氧阴离子产生的增加和氧化应激的增加进一步证实了该表型。然后,这导致经典的应力激活激酶(如ERK,JNK和p38)的激活,这在DAPK2基因消融中观察到。有趣的是,在过时的激酶死亡的DAPK2突变体的过表达中,氧化应激的产生进一步增强,表明正是DAPK2的激酶结构域对于维持线粒体完整性以及通过推断对于细胞代谢而言很重要。

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