4.7 Article

Spatiotemporal expression of HMGB2 regulates cell proliferation and hepatocyte size during liver regeneration

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SCIENTIFIC REPORTS
卷 12, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-022-16258-4

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  1. Japan Society for the Promotion of Science [16K08471, 21K06738, 19K16477]
  2. Miyazaki University Hospital

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This study investigated the functional role of chromatin protein HMGB2 in liver regeneration. The results showed that the spatiotemporal expression of HMGB2 is closely correlated with hepatocyte proliferation, and HMGB2 knockout leads to delayed cell proliferation and hepatocyte hypertrophy. The experiments also found that cell proliferation is significantly decreased in HMGB2 KO cells and HMGB2 siRNA transfected cells.
Liver regeneration is an extraordinarily complex process involving a variety of factors; however, the role of chromatin protein in hepatocyte proliferation is largely unknown. In this study, we investigated the functional role of high-mobility group box 2 (HMGB2), a chromatin protein in liver regeneration using wild-type and HMGB2-knockout (KO) mice. Liver tissues were sampled after 70% partial hepatectomy (PHx), and analyzed by immunohistochemistry, western blotting and flow cytometry using various markers of cell proliferation. In WT mice, hepatocyte proliferation was strongly correlated with the spatiotemporal expression of HMGB2; however, cell proliferation was significantly delayed in hepatocytes of HMGB2-KO mice. Quantitative PCR demonstrated that cyclin D1 and cyclin B1 mRNAs were significantly decreased in HMGB2-KO mice livers. Interestingly, hepatocyte size was significantly larger in HMGB2-KO mice at 36-72 h after PHx, and these results suggest that hepatocyte hypertrophy appeared in parallel with delayed cell proliferation. In vitro experiments demonstrated that cell proliferation was significantly decreased in HMGB2-KO cells. A significant delay in cell proliferation was also found in HMGB2-siRNA transfected cells. In summary, spatiotemporal expression of HMGB2 is important for regulation of hepatocyte proliferation and cell size during liver regeneration.

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