Fibroblast expression of transmembrane protein smoothened governs microenvironment characteristics after acute kidney injury

平滑 细胞生物学 急性肾损伤 刺猬 Wnt信号通路 刺猬信号通路 细胞外基质 癌症研究 生物 信号转导 医学 内科学
作者
Yukui Zhang,Haiyan Fu,Zachary Palanza,Jianling Tao,Yi‐Han Lin,Wenjian Min,Yi Qiao,Christopher Bonin,Geneva Hargis,Yuanyuan Wang,Peng Yang,Donald L. Kreutzer,Yanlin Wang,Yansheng Liu,Yanbao Yu,Youhua Liu,Dong Zhou
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:134 (13)
标识
DOI:10.1172/jci165836
摘要

The smoothened (Smo) receptor facilitates hedgehog signaling between kidney fibroblasts and tubules during acute kidney injury (AKI). Tubule-derived hedgehog is protective in AKI, but the role of fibroblast-selective Smo is unclear. Here, we report that Smo-specific ablation in fibroblasts reduced tubular cell apoptosis and inflammation, enhanced perivascular mesenchymal cells activities, and preserved kidney function after AKI. Global proteomics of these kidneys identified extracellular matrix proteins, and nidogen-1 glycoprotein in particular, as key response markers to AKI. Intriguingly, Smo was bound to nidogen-1 in cells, suggesting that loss of Smo could impact nidogen-1 accessibility. Phosphoproteomics revealed that the 'AKI protector' Wnt signaling pathway was activated in these kidneys. Mechanistically, nidogen-1 interacted with integrin β1 to induce Wnts in tubules to mitigate AKI. Altogether, our results support that fibroblast-selective Smo dictates AKI fate through cell-matrix interactions, including nidogen-1, and offers a robust resource and path to further dissect AKI pathogenesis.
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