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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >PUMA dependent mitophagy by Abrus agglutinin contributes to apoptosis through ceramide generation
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PUMA dependent mitophagy by Abrus agglutinin contributes to apoptosis through ceramide generation

机译:Abrus Agglutinin的Puma依赖性乳腺素通过神经酰胺产生有助于细胞凋亡

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PUMA, a BH3-only pro-apoptotic Bc12 family protein, is known to translocate from the cytosol into the mitochondria in order to induce apoptosis. Interestingly, the induction of PUMA by p53 plays a critical role in DNA damage-induced apoptosis. In this study, we reported mitophagy inducing potential of PUMA triggered by phytolectin Abrus agglutinin (AGG) in U87MG glioblastoma cells and established AGG-induced ceramide acts as the chief mediator of mitophagy dependent cell death through activation of both mitochondrial ROS as well as ER stress. Importantly, AGG upregulates PUMA expression in U87MG cells with the generation of dysfunctional mitochondria, with gain and loss of function of PUMA is shown to alter mitophagy induction. At the molecular level, our study identified that the LC3 interacting region (LIR) located at the C-terminal end of PUMA interacts with LC3 in order to stimulate mitophagy. In addition, AGG is also found to trigger ubiquitination of PUMA which in turn interacted with p62 for prompting mitophagy suggesting that AGG turns on PUMA-mediated mitophagy in U87MG cells in both p62-dependent as well as in p62-independent manner. Interestingly, AGG-triggered ceramide production through activation of ceramide synthase-1 leads to induction of ER stress and ROS accumulation to promote mitochondrial damage as well as mitophagy. Further, upon pre-treatment with Mdivi-1, DRP1 inhibitor, AGG exposure results in suppression of apoptosis in U87MG cells indicating AGG-induced mitophagy switches to apoptosis that can be exploited for better cancer therapeutics.
机译:普及,一种仅仅是BH3的亲凋亡BC12家族蛋白,已知从细胞溶醇转移到线粒体中以诱导细胞凋亡。有趣的是,P53的PUMA诱导在DNA损伤诱导的细胞凋亡中起着关键作用。在这项研究中,我们报道了由植物素Abrus血浆蛋白(AgG)引发的浮蛋白(AgG)在U87MG胶质母细胞瘤细胞中产生的诱导潜力,并建立了通​​过对线粒体ROS的激活以及ER应力的激活来作为MITOphagy依赖细胞死亡的主要介体。 。重要的是,AGG将U87MG细胞中的胃肠瘤表达提出,产生功能障碍线粒体的产生,并且Puma的功能丧失显示出改变培养基诱导。在分子水平,我们的研究发现,位于Puma的C末端的LC3相互作用区域(LIR)与LC3相互作用以刺激乳化物。此外,还发现AGG触发PUMA的泛素,其又与P62相互作用,以提示促使助致的效果在P62依赖性和P62依赖性的u87mg细胞中逆转P62依赖性细胞中的Puma介导的乳化物。有趣的是,通过激活神经酰胺合酶-1激活agg触发的神经酰胺产生,导致诱导ER应激和ROS积累,以促进线粒体损伤以及MITOCHAGY。此外,在用MDIVI-1预处理,DRP1抑制剂后,AGG暴露导致抑制U87MG细胞中的凋亡,所述U87MG细胞表明AgG诱导的癌症切换到细胞凋亡,可用于更好的癌症治疗剂。

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