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Uromodulin p.Cys147Trp mutation drives kidney disease by activating ER stress and apoptosis

塔姆-霍斯法尔蛋白 生物 突变 未折叠蛋白反应 疾病 细胞生物学 细胞凋亡 癌症研究 医学 内科学 基因 遗传学
作者
Bryce G. Johnson,Lan Dang,Graham Marsh,Allie M. Roach,Zebulon G. Levine,Anthony Monti,Deepak Reyon,Lionel Feigenbaum,Jeremy S. Duffield
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:127 (11): 3954-3969 被引量:57
标识
DOI:10.1172/jci93817
摘要

Uromodulin-associated kidney disease (UAKD) is caused by mutations in the uromodulin (UMOD) gene that result in a misfolded form of UMOD protein, which is normally secreted by nephrons. In UAKD patients, mutant UMOD is poorly secreted and accumulates in the ER of distal kidney epithelium, but its role in disease progression is largely unknown. Here, we modeled UMOD accumulation in mice by expressing the murine equivalent of the human UMOD p.Cys148Trp point mutation (UmodC147W/+ mice). Like affected humans, these UmodC147W/+ mice developed spontaneous and progressive kidney disease with organ failure over 24 weeks. Analysis of diseased kidneys and purified UMOD-producing cells revealed early activation of the PKR-like ER kinase/activating transcription factor 4 (PERK/ATF4) ER stress pathway, innate immune mediators, and increased apoptotic signaling, including caspase-3 activation. Unexpectedly, we also detected autophagy deficiency. Human cells expressing UMOD p.Cys147Trp recapitulated the findings in UmodC147W/+ mice, and autophagy activation with mTOR inhibitors stimulated the intracellular removal of aggregated mutant UMOD. Human cells producing mutant UMOD were susceptible to TNF-α– and TRAIL-mediated apoptosis due to increased expression of the ER stress mediator tribbles-3. Blocking TNF-α in vivo with the soluble recombinant fusion protein TNFR:Fc slowed disease progression in UmodC147W/+ mice by reducing active caspase-3, thereby preventing tubule cell death and loss of epithelial function. These findings reveal a targetable mechanism for disease processes involved in UAKD.
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