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Grp170的缺失导致内质网功能的灾难性破坏。

Loss of Grp170 results in catastrophic disruption of endoplasmic reticulum functions.

作者信息

Mann Melissa J, Melendez-Suchi Chris, Sukhoplyasova Maria, Flory Ashley R, Carson Irvine Mary, Iyer Anuradha R, Vorndran Hannah, Guerriero Christopher J, Brodsky Jeffrey L, Hendershot Linda M, Buck Teresa M

出版信息

bioRxiv. 2023 Oct 20:2023.10.19.563191. doi: 10.1101/2023.10.19.563191.

Abstract

GRP170, a product of the gene, is required for mouse embryonic development, and its ablation in kidney nephrons leads to renal failure. Unlike most chaperones, GRP170 is the lone member of its chaperone family in the ER lumen. However, the cellular requirement for GRP170, which both binds non-native proteins and acts as nucleotide exchange factor for BiP, is poorly understood. Here, we report on the isolation of embryonic fibroblasts from mice in which LoxP sites were engineered in the loci ( ). A doxycycline-regulated Cre recombinase was also stably introduced into these cells. Induction of Cre resulted in excision of and depletion of Grp170 protein, culminating in apoptotic cell death. As Grp170 levels fell we observed increased steady-state binding of BiP to a client, slowed degradation of a misfolded BiP substrate, and BiP accumulation in NP40-insoluble fractions. Consistent with disrupted BiP functions, we observed reactivation of BiP storage pools and induction of the unfolded protein response (UPR) in futile attempts to provide compensatory increases in ER chaperones and folding enzymes. Together, these results provide insights into the cellular consequences of controlled Grp170 loss and insights into mutations in the locus and human disease.

摘要

GRP170是该基因的产物,是小鼠胚胎发育所必需的,其在肾单位中的缺失会导致肾衰竭。与大多数伴侣蛋白不同,GRP170是内质网腔中其伴侣蛋白家族的唯一成员。然而,对于既结合非天然蛋白质又作为BiP的核苷酸交换因子的GRP170的细胞需求,人们了解甚少。在这里,我们报告了从在该基因座( )中设计了LoxP位点的小鼠中分离胚胎成纤维细胞的情况。一种强力霉素调节的Cre重组酶也被稳定地引入这些细胞中。Cre的诱导导致该基因座的切除和Grp170蛋白的消耗,最终导致凋亡性细胞死亡。随着Grp170水平的下降,我们观察到BiP与一个客户蛋白的稳态结合增加,错误折叠的BiP底物的降解减慢,以及BiP在NP40不溶性组分中的积累。与BiP功能的破坏一致,我们观察到BiP储存池的重新激活和未折叠蛋白反应(UPR)的诱导,徒劳地试图提供内质网伴侣蛋白和折叠酶的补偿性增加。总之,这些结果提供了对可控的Grp170缺失的细胞后果的见解,以及对该基因座突变和人类疾病的见解。

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