bioRxiv · 10.1101/2022.07.13.499909
Kindlin-2 inhibits TNF/NF-kB-caspase 8 pathway in hepatocytes to maintain liver development and function
Abstract
Inflammatory liver diseases are a major cause of morbidity and mortality worldwide; however, underlying mechanisms are incompletely understood. Here we show that deleting the focal adhesion protein Kindlin-2 in hepatocytes using the Alb-Cre transgenic mice causes a severe inflammation, resulting in premature death. Kindlin-2 loss accelerates hepatocyte apoptosis with subsequent compensatory cell proliferation and accumulation of the collagenous extracellular matrix, leading to massive liver fibrosis and dysfunction. Mechanistically, Kindlin-2 loss abnormally activates the tumor necrosis factor (TNF) pathway. Blocking activation of the TNF signaling pathway by deleting TNF receptor or deletion of caspase 8 expression in hepatocytes essentially restores liver function and prevents premature death caused by Kindlin-2 loss.Finally, of translational significance, adeno-associated virus mediated overexpression of Kindlin-2 in hepatocytes attenuates the D-galactosamine and lipopolysaccharide-induced liver injury and death in mice. Collectively, we establish that Kindlin-2 acts as a novel intrinsic inhibitor of the TNF pathway to maintain liver homeostasis and may define a useful therapeutic target for liver diseases.
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gao, h., Zhong, y., Zhou, l., Lin, s., Hou, x., Ding, z., Li, y., Yao, q., Cao, h., Zou, x., Chen, D., Bai, x., Xiao, G.. 2022-07-13. Kindlin-2 inhibits TNF/NF-kB-caspase 8 pathway in hepatocytes to maintain liver development and function. https://doi.org/10.1101/2022.07.13.499909
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