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首页> 外文期刊>Apoptosis: An international journal on programmed cell death >Klotho-mediated changes in the expression of Atg13 alter formation of ULK1 complex and thus initiation of ER- and Golgi-stress response mediated autophagy
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Klotho-mediated changes in the expression of Atg13 alter formation of ULK1 complex and thus initiation of ER- and Golgi-stress response mediated autophagy

机译:Klotho介导的ATG13 Alter形成ULK1复合物的表达的变化,从而引发Er-and Golgi-Regress响应介导的自噬

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摘要

In the previous paper of our group, we have demonstrated that one of the crucial factors involved in the crosstalk between autophagy and apoptosis is klotho protein. We have shown that klotho silencing in normal human fibroblasts intensifies lipopolysaccharide (LPS)-induced p-eIF2a-mediated stress of endoplasmic reticulum and thus leads to retardation of prosurvival autophagy and induction of apoptotic cell death. In this study, we have performed a detailed step-by-step analysis of autophagy flux-related genes' expression and endoplasmic reticulum and Golgi stress related pathways in order to determine the exact mechanistic event when autophagy is inhibited in klotho-deficient cells on account of apoptosis initiation. We provide evidence that klotho-silencing in LPS-treated cells results in differential course of ER- and Golgi-mediated stress response. Further, we show that in klotho-deficient cells formation of ULK1 complex is inhibited and thus autophagy initiation is blocked on the account of apoptosis activation, while in the control cells cytoprotective autophagy is activated. Finally, in klotho-deficient cells formation of ULK1 complex is prevented by downregulated expression of Atg13. Thus, this study suggests a novel targeting pathway for efficient elimination of autophagy-deficient cells.
机译:在我们小组的前一篇文章中,我们已经证明,串扰之间的串扰和细胞凋亡之间的关键因素是Klotho蛋白。我们已经表明,Klotho在正常人体成纤维细胞中沉默增强了脂多糖(LPS) - 诱导的p-eIF2a介导的内质网的胁迫,从而导致脱抗性自噬和凋亡细胞死亡诱导的延迟。在这项研究中,我们已经进行了自噬助焊剂相关基因的表达和内质网和Golgi应力相关途径的详细逐步分析,以确定在核查缺陷的细胞中抑制自噬的确切机制事件凋亡引发。我们提供了证据表明,LPS处理的细胞中的Klotho-Suterening导致Er-and Golgi介导的应激反应的差异过程。此外,我们表明,在Klotho缺陷的细胞中,ULK1复合物的形成被抑制,因此在凋亡激活的叙述上阻断自噬引发,而在对照细胞中被激活细胞保护自噬。最后,通过下调ATG13的表达,预防ULK1复合物的克罗托缺乏细胞。因此,该研究表明了一种用于有效消除自噬缺陷细胞的新型靶向途径。

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