Hepatocyte MMP14 mediates liver and inter-organ inflammatory responses to diet-induced liver injury

Shannon C Kelly, Cassandra B Higgins, Jiameng Sun, Joshua A Adams, Yiming Zhang, Samuel Ballentine, Yong Miao, XiaoXia Cui, Małgorzata Milewska, Ilona Wandzik, Jun Yoshino, Benjamin M Swarts, Shun-ichi Wada, Brian J DeBosch
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Abstract

The matrix metalloproteinase MMP14 is a ubiquitously expressed, membrane-bound, secreted endopeptidase that proteolyzes substrates to regulate development, signaling, and metabolism. However, the spatial and contextual events inciting MMP14 activation, and its metabolic sequelae are not fully understood. Here, we introduce an inducible, hepatocyte-specific MMP14-deficient model (MMP14LKO mice) to elucidate cell-intrinsic and systemic MMP14 function. We show that hepatocyte MMP14 mediates diet-induced body-weight gain, peripheral adiposity, and impaired glucose homeostasis, and drives diet-induced liver TG accumulation, and induction of hepatic inflammatory and fibrotic gene expression. Single-nucleus RNA sequencing revealed that hepatocyte MMP14 mediates Kupffer and T cell accumulation and promotes diet-induced hepatocellular sub-population shifts toward protection against lipid absorption. MMP14 co-immunoprecipitation and proteomic analyses revealed MMP14 substrate binding across both inflammatory and cytokine signaling, as well as metabolic pathways. Strikingly, hepatocyte MMP14 loss-of-function suppressed skeletal muscle and adipose inflammation in vivo, and in a reductionist adipose-hepatocyte co-culture model. Finally, we reveal that trehalose-type glucose transporter inhibitors decrease hepatocyte MMP14 gene expression and nominate these inhibitors as translatable therapeutic metabolic agents. We conclude that hepatocyte MMP14 drives liver and inter-organ inflammatory and metabolic sequelae of obesigenic dietary insult. Modulating MMP14 activation and blockade thus represents a targetable node in the pathogenesis of hepatic inflammation.
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肝细胞 MMP14 介导饮食诱发肝损伤的肝脏和器官间炎症反应
基质金属蛋白酶 MMP14 是一种普遍表达的、膜结合的分泌型内肽酶,可蛋白水解底物,从而调节发育、信号传导和新陈代谢。然而,引发 MMP14 激活的空间和环境事件及其代谢后遗症还不完全清楚。在这里,我们引入了一种诱导性、肝细胞特异性 MMP14 缺失模型(MMP14LKO 小鼠),以阐明细胞内在和系统性 MMP14 功能。我们的研究表明,肝细胞 MMP14 介导饮食诱导的体重增加、外周脂肪增多和葡萄糖稳态受损,并驱动饮食诱导的肝脏 TG 累积以及肝脏炎症和纤维化基因表达的诱导。单核 RNA 测序显示,肝细胞 MMP14 介导 Kupffer 和 T 细胞的积累,并促进饮食诱导的肝细胞亚群向保护脂质吸收的方向转变。MMP14共免疫沉淀和蛋白质组分析显示,MMP14底物结合跨越了炎症和细胞因子信号传导以及代谢途径。令人震惊的是,肝细胞 MMP14 功能缺失抑制了体内骨骼肌和脂肪炎症,也抑制了还原论脂肪-肝细胞共培养模型中的骨骼肌和脂肪炎症。最后,我们揭示了三卤糖型葡萄糖转运体抑制剂可降低肝细胞 MMP14 基因表达,并将这些抑制剂提名为可转化的治疗代谢药物。我们的结论是,肝细胞 MMP14 驱动肝脏和器官间炎症和代谢后遗症的肥胖饮食侮辱。因此,调节 MMP14 的活化和阻断是肝脏炎症发病机制中的一个目标节点。
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