The critical role of endoplasmic reticulum stress and the stimulator of interferon genes (STING) pathway in kidney fibrosis.

IF 14.8 1区 医学 Q1 UROLOGY & NEPHROLOGY Kidney international Pub Date : 2024-11-18 DOI:10.1016/j.kint.2024.10.021
Magaiver Andrade-Silva, Poonam Dhillon, Andrea Sanchez-Navarro, Dhanunjay Mukhi, Hailong Hu, Lakshmi P Kolligundla, Andrea Bergeson, Amin Abedini, Jonathan Levinsohn, Bernhard Dumoulin, Niels O S Câmara, Jonathan J Miner, Katalin Susztak
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Abstract

Endoplasmic Reticulum (ER) stress is a condition in which the ER is overwhelmed and unable to manage its protein load properly. The precise activation mechanisms and role of ER stress in kidney disease remain unclear. To study this, we performed unbiased transcriptomics analysis to demonstrate ER stress in kidneys of patients with chronic kidney disease and in mouse models of acute and chronic kidney injury (cisplatin and unilateral ureteral obstruction and reanalyzed previously published data on folic acid and mitochondrial transcription factor A(TFAM) knockout mice). Inhibiting the protein kinase RNA-like ER kinase (PERK) arm of ER stress but not activating transcription factor 6 or inositol-requiring enzyme 1, protected mice from kidney fibrosis. The stimulator of interferon genes (STING) was identified as an important upstream activator of ER stress in kidney tubule cells. STING and PERK were found to physically interact, and STING agonists induced PERK activation in kidney tubule cells. Mice with a STING activating mutation presented with ER stress and kidney fibroinflammation. We also generated mice with a tubule specific STING deletion that were resistant to ER stress and kidney fibrosis. Human kidney spatial transcriptomics highlighted a spatial correlation between STING, ER stress and fibrotic gene expression. Thus, our results indicate that STING is an important upstream regulator of PERK and ER stress in tubule cells during kidney fibrosis development.

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内质网应激和干扰素基因刺激器(STING)通路在肾脏纤维化中的关键作用。
内质网(ER)应激是指内质网不堪重负,无法正常管理其蛋白质负荷的一种状态。ER应激在肾脏疾病中的确切激活机制和作用仍不清楚。为了研究这个问题,我们进行了无偏见的转录组学分析,以证明慢性肾病患者的肾脏以及急性和慢性肾损伤小鼠模型(顺铂和单侧输尿管梗阻,并重新分析了以前发表的叶酸和线粒体转录因子A(TFAM)基因敲除小鼠的数据)中的ER应激。抑制ER应激的蛋白激酶RNA样ER激酶(PERK)臂,但不激活转录因子6或肌醇需要酶1,可保护小鼠免于肾脏纤维化。研究发现,干扰素基因刺激因子(STING)是肾小管细胞ER应激的重要上游激活因子。研究发现 STING 和 PERK 有物理相互作用,STING 激动剂可诱导肾小管细胞中的 PERK 激活。STING 激活突变的小鼠会出现 ER 应激和肾脏纤维炎症。我们还生成了具有肾小管特异性 STING 缺失的小鼠,它们对 ER 压力和肾脏纤维化具有抵抗力。人类肾脏空间转录组学突显了 STING、ER 应激和纤维化基因表达之间的空间相关性。因此,我们的研究结果表明,STING 是肾脏纤维化发展过程中肾小管细胞中 PERK 和 ER 应激的重要上游调节因子。
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来源期刊
Kidney international
Kidney international 医学-泌尿学与肾脏学
CiteScore
23.30
自引率
3.10%
发文量
490
审稿时长
3-6 weeks
期刊介绍: Kidney International (KI), the official journal of the International Society of Nephrology, is led by Dr. Pierre Ronco (Paris, France) and stands as one of nephrology's most cited and esteemed publications worldwide. KI provides exceptional benefits for both readers and authors, featuring highly cited original articles, focused reviews, cutting-edge imaging techniques, and lively discussions on controversial topics. The journal is dedicated to kidney research, serving researchers, clinical investigators, and practicing nephrologists.
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