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首页> 外文期刊>Cell Reports >Stress-Independent Activation of XBP1s and/or ATF6 Reveals Three Functionally Diverse ER Proteostasis Environments
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Stress-Independent Activation of XBP1s and/or ATF6 Reveals Three Functionally Diverse ER Proteostasis Environments

机译:XBP1s和/或ATF6的应力独立激活揭示了三个功能多样的内质网蛋白水解环境。

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The unfolded protein response (UPR) maintains endoplasmic reticulum (ER) proteostasis through the activation of transcription factors such as XBP1s and ATF6. The functional consequences of these transcription factors for ER proteostasis remain poorly defined. Here, we describe methodology that enables orthogonal, small-molecule-mediated activation of the UPR-associated transcription factors XBP1s and/or ATF6 in the same cell independent of stress. We employ transcriptomics and quantitative proteomics to evaluate ER proteostasis network remodeling owing to the XBP1s and/or ATF6 transcriptional programs. Furthermore, we demonstrate that the three ER proteostasis environments accessible by activating XBP1s and/or ATF6 differentially influence the folding, trafficking, and degradation of destabilized ER client proteins without globally affecting the endogenous proteome. Our data reveal how the ER proteostasis network is remodeled by the XBP1s and/or ATF6 transcriptional programs at the molecular level and demonstrate the potential for selective restoration of aberrant ER proteostasis of pathologic, destabilized proteins through arm-selective UPR activation. Video Abstract:.
机译:未折叠的蛋白应答(UPR)通过激活诸如XBP1s和ATF6的转录因子来维持内质网(ER)的蛋白稳态。这些转录因子对内质网蛋白水解的功能后果尚不清楚。在这里,我们描述了能够在与压力无关的同一细胞中正交,小分子介导的UPR相关转录因子XBP1s和/或ATF6激活的方法。我们采用转录组学和定量蛋白质组学技术来评估由于XBP1s和/或ATF6转录程序而导致的ER蛋白稳态网络重构。此外,我们证明了通过激活XBP1s和/或ATF6可以进入的三个ER蛋白质稳态环境差异地影响了不稳定的ER客户蛋白的折叠,运输和降解,而没有全局性地影响内源蛋白质组。我们的数据揭示了如何在分子水平上通过XBP1s和/或ATF6转录程序重塑ER蛋白稳态网络,并证明了通过手臂选择性UPR激活选择性恢复病理性,不稳定蛋白异常ER蛋白稳态的潜力。视频摘要:

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