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首页> 外文期刊>Cell death & disease. >Novel prosurvival function of Yip1A in human cervical cancer cells: constitutive activation of the IRE1 and PERK pathways of the unfolded protein response
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Novel prosurvival function of Yip1A in human cervical cancer cells: constitutive activation of the IRE1 and PERK pathways of the unfolded protein response

机译:YIP1A在人宫颈癌细胞中的新型抗腐抗功能:展开蛋白质反应的IS1和PERK途径的组成型激活

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摘要

Cancer cells are under chronic endoplasmic reticulum (ER) stress due to hypoxia, low levels of nutrients, and a high metabolic demand for proliferation. To survive, they constitutively activate the unfolded protein response (UPR). The inositol-requiring protein 1 (IRE1) and protein kinase RNA-like ER kinase (PERK) signaling branches of the UPR have been shown to have cytoprotective roles in cancer cells. UPR-induced autophagy is another prosurvival strategy of cancer cells, possibly to remove misfolded proteins and supply nutrients. However, the mechanisms by which cancer cells exploit the UPR and autophagy machinery to promote survival and the molecules that are essential for these processes remain to be elucidated. Recently, a multipass membrane protein, Yip1A, was shown to function in the activation of IRE1 and in UPR-induced autophagy. In the present study, we explored the possible role of Yip1A in activation of the UPR by cancer cells for their survival, and found that depletion of Yip1A by RNA interference (RNAi) induced apoptotic cell death in HeLa and CaSki cervical cancer cells. Intriguingly, Yip1A was found to activate the IRE1 and PERK pathways of the UPR constitutively in HeLa and CaSki cells. Yip1A mediated the phosphorylation of IRE1 and also engaged in the transcription of PERK. The activation of these signaling pathways upregulated the expression of anti-apoptotic proteins and autophagy-related proteins. These events might enhance resistance to apoptosis and promote cytoprotective autophagy in HeLa and CaSki cells. The present study is the first to uncover a key prosurvival modulator, Yip1A, which coordinates IRE1 signaling with PERK signaling to support the survival of HeLa and CaSki cervical cancer cells.
机译:由于缺氧,营养水平低,营养素低,营养素低,癌细胞胁迫和对增殖的高度代谢需求,癌细胞位于慢性内质网(ER)胁迫下。为了生存,它们组成思考展开的蛋白质反应(UPR)。要求UPR的肌醇需要蛋白质1(IRE1)和蛋白激酶RNA样ER激酶(PERK)信号分支癌症中的癌细胞中具有细胞保护作用。 UPR诱导的自噬是癌细胞的另一种刺激策略,可能除去错误折叠的蛋白质和供应营养。然而,癌细胞利用UPR和自噬机械促进存活的机制和对这些过程必不可少的分子仍然待阐明。最近,显示了多脂膜蛋白,YIP1a在激活IS1和uPR诱导的自噬中起作用。在本研究中,我们探讨了YIP1A在癌细胞活化中激活UPR的可能作用,并发现通过RNA干扰(RNAi)诱导的yip1a在HeLa和Caski宫颈癌细胞中诱导凋亡细胞死亡。有趣的是,yip1a被发现在Hela和Caski细胞中体组成普遍激活UPR的IS1和Perk途径。 yip1a介导inire1的磷酸化,也从事珀克的转录。这些信号通路的激活上调了抗凋亡蛋白和自噬相关蛋白的表达。这些事件可能增强对凋亡的抗性,促进HeLa和Caski细胞中的细胞保护自噬。本研究是首次揭示关键射击调节剂YIP1A的yip1a,其与Perk信号传导协调,以支持HeLa和Caski宫颈癌细胞的存活。

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