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Publication : WNT5A inhibits hepatocyte proliferation and concludes β-catenin signaling in liver regeneration.

First Author  Yang J Year  2015
Journal  Am J Pathol Volume  185
Issue  8 Pages  2194-205
PubMed ID  26100214 Mgi Jnum  J:225737
Mgi Id  MGI:5694291 Doi  10.1016/j.ajpath.2015.04.021
Citation  Yang J, et al. (2015) WNT5A inhibits hepatocyte proliferation and concludes beta-catenin signaling in liver regeneration. Am J Pathol 185(8):2194-205
abstractText  Activation of Wnt/beta-catenin signaling during liver regeneration (LR) after partial hepatectomy (PH) is observed in several species. However, how this pathway is turned off when hepatocyte proliferation is no longer required is unknown. We assessed LR in liver-specific knockouts of Wntless (Wls-LKO), a protein required for Wnt secretion from a cell. When subjected to PH, Wls-LKO showed prolongation of hepatocyte proliferation for up to 4 days compared with littermate controls. This coincided with increased beta-catenin-T-cell factor 4 interaction and cyclin-D1 expression. Wls-LKO showed decreased expression and secretion of inhibitory Wnt5a during LR. Wnt5a expression increased between 24 and 48 hours, and Frizzled-2 between 24 and 72 hours, after PH in normal mice. Treatment of primary mouse hepatocytes and liver tumor cells with Wnt5a led to a notable decrease in beta-catenin-T-cell factor activity, cyclin-D1 expression, and cell proliferation. Intriguingly, Wnt5a-LKO did not display any prolongation of LR because of compensation by other cells. In addition, Wnt5a-LKO hepatocytes failed to respond to exogenous Wnt5a treatment in culture because of a compensatory decrease in Frizzled-2 expression. In conclusion, we demonstrate Wnt5a to be, by default, a negative regulator of beta-catenin signaling and hepatocyte proliferation, both in vitro and in vivo. We also provide evidence that the Wnt5a/Frizzled-2 axis suppresses beta-catenin signaling in hepatocytes in an autocrine manner, thereby contributing to timely conclusion of the LR process.
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