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Small molecule proteostasis regulators that reprogram the ER to reduce extracellular protein aggregation

机译:小分子蛋白稳定调节剂可对ER重新编程以减少细胞外蛋白聚集

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摘要

Imbalances in endoplasmic reticulum (ER) proteostasis are associated with etiologically-diverse degenerative diseases linked to excessive extracellular protein misfolding and aggregation. Reprogramming of the ER proteostasis environment through genetic activation of the Unfolded Protein Response (UPR)-associated transcription factor ATF6 attenuates secretion and extracellular aggregation of amyloidogenic proteins. Here, we employed a screening approach that included complementary arm-specific UPR reporters and medium-throughput transcriptional profiling to identify non-toxic small molecules that phenocopy the ATF6-mediated reprogramming of the ER proteostasis environment. The ER reprogramming afforded by our molecules requires activation of endogenous ATF6 and occurs independent of global ER stress. Furthermore, our molecules phenocopy the ability of genetic ATF6 activation to selectively reduce secretion and extracellular aggregation of amyloidogenic proteins. These results show that small molecule-dependent ER reprogramming, achieved through preferential activation of the ATF6 transcriptional program, is a promising strategy to ameliorate imbalances in ER function associated with degenerative protein aggregation diseases.>DOI:
机译:内质网(ER)蛋白质稳态失衡与病原学多样的退化性疾病有关,后者与细胞外蛋白质过度折叠和聚集有关。通过未折叠蛋白应答(UPR)相关转录因子ATF6的遗传激活来重新编程ER蛋白稳态环境,可减轻淀粉样蛋白的分泌和胞外聚集。在这里,我们采用了一种筛选方法,其中包括互补的臂特异性UPR报道分子和中等通量的转录谱,以鉴定无毒的小分子,这些小分子表型复制了ATF6介导的ER蛋白稳态的重编程。我们分子提供的ER重编程需要激活内源性ATF6,并且独立于整体ER应激而发生。此外,我们的分子表型显示了遗传性ATF6激活选择性地减少淀粉样蛋白的分泌和胞外聚集的能力。这些结果表明,通过优先激活ATF6转录程序实现的依赖小分子的ER重编程,是缓解与变性蛋白聚集疾病相关的ER功能失衡的一种有前途的策略。> DOI:

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