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Publication : ZNRF3 and RNF43 cooperate to safeguard metabolic liver zonation and hepatocyte proliferation.

First Author  Sun T Year  2021
Journal  Cell Stem Cell Volume  28
Issue  10 Pages  1822-1837.e10
PubMed ID  34129813 Mgi Jnum  J:320607
Mgi Id  MGI:6874783 Doi  10.1016/j.stem.2021.05.013
Citation  Sun T, et al. (2021) ZNRF3 and RNF43 cooperate to safeguard metabolic liver zonation and hepatocyte proliferation. Cell Stem Cell 28(10):1822-1837.e10
abstractText  AXIN2 and LGR5 mark intestinal stem cells (ISCs) that require WNT/beta-Catenin signaling for constant homeostatic proliferation. In contrast, AXIN2/LGR5+ pericentral hepatocytes show low proliferation rates despite a WNT/beta-Catenin activity gradient required for metabolic liver zonation. The mechanisms restricting proliferation in AXIN2+ hepatocytes and metabolic gene expression in AXIN2+ ISCs remained elusive. We now show that restricted chromatin accessibility in ISCs prevents the expression of beta-Catenin-regulated metabolic enzymes, whereas fine-tuning of WNT/beta-Catenin activity by ZNRF3 and RNF43 restricts proliferation in chromatin-permissive AXIN2+ hepatocytes, while preserving metabolic function. ZNRF3 deletion promotes hepatocyte proliferation, which in turn becomes limited by RNF43 upregulation. Concomitant deletion of RNF43 in ZNRF3 mutant mice results in metabolic reprogramming of periportal hepatocytes and induces clonal expansion in a subset of hepatocytes, ultimately promoting liver tumors. Together, ZNRF3 and RNF43 cooperate to safeguard liver homeostasis by spatially and temporally restricting WNT/beta-Catenin activity, balancing metabolic function and hepatocyte proliferation.
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