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IRE1 Signaling Affects Cell Fate During the Unfolded Protein Response

机译:IRE1信号影响未折叠的蛋白质反应过程中的细胞命运。

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Endoplasmic reticulum (ER) stress activates a set of signaling pathways, collectively termed the unfolded protein response (UPR). The three UPR branches (IRE1, PERK, and ATF6) promote cell survival by reducing misfolded protein levels. UPR signaling also promotes apoptotic cell death if ER stress is not alleviated. How the UPR integrates its cytoprotective and proapoptotic outputs to select between life or death cell fates is unknown. We found that IRE1 and ATF6 activities were attenuated by persistent ER stress in human cells. By contrast, PERK signaling, including translational inhibition and proapoptotic transcription regulator Chop induction, was maintained. When IRE1 activity was sustained artificially, cell survival was enhanced, suggesting a causal link between the duration of UPR branch signaling and life or death cell fate after ER stress. Key findings from our studies in cell culture were recapitulated in photoreceptors expressing mutant rhodopsin in animal models of retinitis pigmentosa.
机译:内质网(ER)应激激活了一组信号通路,统称为未折叠蛋白应答(UPR)。 UPR的三个分支(IRE1,PERK和ATF6)通过减少错误折叠的蛋白质水平来促进细胞存活。如果不缓解内质网应激,UPR信号传导也会促进凋亡细胞死亡。 UPR如何整合其细胞保护和促凋亡输出以在生命或死亡细胞命运之间进行选择尚不清楚。我们发现IRE1和ATF6活性被人类细胞中持续的内质网应激所减弱。相比之下,PERK信号传导,包括翻译抑制和促凋亡转录调节子Chop诱导,得以维持。人工维持IRE1活性后,细胞存活率提高,表明UP分支信号的持续时间与内质网应激后生命或死亡细胞命运之间存在因果关系。我们在细胞培养研究中的主要发现在色素性视网膜炎动物模型中表达突变体视紫红质的感光器中进行了概括。

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