Mesothelin/Mucin 16 Signaling in Activated Portal Fibroblasts Drives the Development of Cholestatic Fibrosis and Hepatocellular Carcinoma in Aged Female Multidrug Resistance Protein 2 Knockout Mice.
Sadatsugu Sakane, Takahiro Nishio, Hiroaki Fuji, Se Yong Park et al.
Kernaussage
Mesothelin-Mucin 16 signaling in activated portal fibroblasts is pathogenic for cholestatic fibrosis and hepatocellular carcinoma, and targeting this pathway may offer a novel therapeutic strategy.
Abstract
The contribution of activated hepatic stellate cells (aHSCs) to cholestatic fibrosis and cancer is well-documented, but the role of portal fibroblasts (PFs), and especially mesothelin (Msln)-mucin 16 (Muc16)- Thy-1 cell surface antigen (Thy-1) signaling in activated portal fibroblasts (aPFs), is unknown. The role of aPFs/mesenchymal cells in the pathogenesis of cholestatic fibrosis and hepatocellular carcinoma (HCC) was studied in aged (16 months old) multidrug resistance protein 2 knockout (Mdr2 -/- ) mice, which mimic primary biliary cholangitis with biliary fibrosis. Aged female Mdr2 -/- mice were more susceptible to cholestatic fibrosis and inflammation and developed 4-fold more adenomas and GPC3 + SOX9 + AFP + HCC than age-matched male littermates. Deletion of Msln or Muc16 ameliorated cholestatic fibrosis, inflammation and HCC in Mdr2 -/- Msln -/- and Mdr2 -/- Muc16 -/- mice, whereas Mdr2 -/- and Mdr2 -/- Thy-1 -/- mice exhibited similar phenotypes and developed severe fibrosis and HCC. Aged Mdr2 -/- Msln -/- and Mdr2 -/- Muc16 -/- mice developed fewer HCCs and of smaller sizes. Ductular proliferation and hepatocyte and cholangiocyte senescence were suppressed in Mdr2 -/- Msln -/- and Mdr2 -/- Muc16 -/- mice, whereas hepatocyte regeneration was markedly improved. Msln- and Muc16-deficient aPFs exhibited a less fibrogenic and inflammatory phenotype, and downregulated expression of Col1a2, Col3a1, Tgfβ1, MMP3, Cxcl9, Clcl7, Lgals1, and MMP2/3. The lack of MMP3 in Msln -/- aPFs was linked to increased hepatocyte proliferation. Based on in vitro studies, MMP3-mediated shedding of hepatic HGFR (c-Met) was identified as one of the mechanisms by which aPFs suppress HGF-c-Met-induced phosphorylation of AKT, ERK, p38, resulting in proliferation of primary human hepatocytes. In turn, proliferation of MMP3-stimulated human hepatocytes was restored in the presence of MMP3 inhibitor. These findings demonstrate that aPFs mediate the crosstalk between cholangiocytes and hepatocytes, regulate hepatocyte functions, and that Msln-Muc16 signaling in aPFs is pathogenic for cholestatic fibrosis and HCC. Msln and Muc16 may become novel targets for anti-fibrotic therapy and patients with HCC and sclerosis cholangitis.
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