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ER stress-induced aggresome trafficking of HtrA1 protects against proteotoxicity

机译:内质网应激诱导的HtrA1聚集体运输可防止蛋白毒性

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摘要

High temperature requirement A1 (HtrA1) belongs to an ancient protein family that is linked to various human disorders. The precise role of exon 1-encoded N-terminal domains and how these influence the biological functions of human HtrA1 remain elusive. In this study, we traced the evolutionary origins of these N-terminal domains to a single gene fusion event in the most recent common ancestor of vertebrates. We hypothesized that human HtrA1 is implicated in unfolded protein response. In highly secretory cells of the retinal pigmented epithelia, endoplasmic reticulum (ER) stress upregulated HtrA1. HtrA1 co-localized with vimentin intermediate filaments in highly arborized fashion. Upon ER stress, HtrA1 tracked along intermediate filaments, which collapsed and bundled in an aggresome at the microtubule organizing center. Gene silencing of HtrA1 altered the schedule and amplitude of adaptive signaling and concomitantly resulted in apoptosis. Restoration of wild-type HtrA1, but not its protease inactive mutant, was necessary and sufficient to protect from apoptosis. A variant of HtrA1 that harbored exon 1 substitutions displayed reduced efficacy in rescuing cells from proteotoxicity. Our results illuminate the integration of HtrA1 in the toolkit of mammalian cells against protein misfolding and the implications of defects in HtrA1 in proteostasis.
机译:高温需求A1(HtrA1)属于古老的蛋白质家族,与各种人类疾病相关。外显子1编码的N末端域的确切作用以及这些如何影响人类HtrA1的生物学功能仍然不清楚。在这项研究中,我们将这些N末端域的进化起源追溯到最近的脊椎动物共同祖先中的单个基因融合事件。我们假设人类HtrA1涉及展开的蛋白质反应。在视网膜色素上皮的高度分泌细胞中,内质网(ER)应力上调HtrA1。 HtrA1与波形蛋白中间丝共定位在高度乔装的方式。在内质网应力作用下,HtrA1沿着中间细丝移动,中间细丝在微管组织中心塌陷并成束聚集。 HtrA1基因沉默改变了自适应信号的时间表和幅度,并随之导致细胞凋亡。恢复野生型HtrA1,而不是恢复其蛋白酶失活的突变体,对于保护细胞凋亡是必要且充分的。带有外显子1替代的HtrA1变体在从蛋白毒性中拯救细胞方面显示出降低的功效。我们的结果阐明了HtrA1在哺乳动物细胞工具包中的整合,可防止蛋白质错误折叠以及蛋白稳定中HtrA1缺陷的影响。

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