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Publication : Epigenetic Compensation Promotes Liver Regeneration.

First Author  Wang S Year  2019
Journal  Dev Cell Volume  50
Issue  1 Pages  43-56.e6
PubMed ID  31231040 Mgi Jnum  J:281277
Mgi Id  MGI:6376424 Doi  10.1016/j.devcel.2019.05.034
Citation  Wang S, et al. (2019) Epigenetic Compensation Promotes Liver Regeneration. Dev Cell 50(1):43-56.e6
abstractText  Two major functions of the epigenome are to regulate gene expression and to suppress transposons. It is unclear how these functions are balanced during physiological challenges requiring tissue regeneration, where exquisite coordination of gene expression is essential. Transcriptomic analysis of seven time points following partial hepatectomy identified the epigenetic regulator UHRF1, which is essential for DNA methylation, as dynamically expressed during liver regeneration in mice. UHRF1 deletion in hepatocytes (Uhrf1(HepKO)) caused genome-wide DNA hypomethylation but, surprisingly, had no measurable effect on gene or transposon expression or liver homeostasis. Partial hepatectomy of Uhrf1(HepKO) livers resulted in early and sustained activation of proregenerative genes and enhanced liver regeneration. This was attributed to redistribution of H3K27me3 from promoters to transposons, effectively silencing them and, consequently, alleviating repression of liver regeneration genes, priming them for expression in Uhrf1(HepKO) livers. Thus, epigenetic compensation safeguards the genome against transposon activation, indirectly affecting gene regulation.
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