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LPS/Bcl3/YAP1 signaling promotes Sox9HNF4α hepatocyte-mediated liver regeneration after hepatectomy. | LitMetric

AI Article Synopsis

  • Recent research shows that Sox9HNF4α hepatocytes are crucial for liver regeneration following chronic injury, but their origin and regulation are not well understood.
  • By using various experimental techniques, it was found that these hepatocytes originate from mature hepatocytes and are essential in the early stages after partial liver removal.
  • The study highlights that knocking down Sox9 impairs liver cell growth and healing, while a protein called Bcl3 enhances liver regeneration by promoting the conversion of hepatocytes through interactions with another protein, YAP1.

Article Abstract

Recent reports have demonstrated that Sox9HNF4α hepatocytes are involved in liver regeneration after chronic liver injury; however, little is known about the origin of Sox9HNF4α hepatocytes and the regulatory mechanism. Employing a combination of chimeric lineage tracing, immunofluorescence, and immunohistochemistry, we demonstrate that Sox9HNF4α hepatocytes, generated by transition from mature hepatocytes, play an important role in the initial phase after partial hepatectomy (PHx). Additionally, knocking down the expression of Sox9 suppresses hepatocyte proliferation and blocks the recovery of lost hepatic tissue. In vitro and in vivo assays demonstrated that Bcl3, activated by LPS, promotes hepatocyte conversion and liver regeneration. Mechanistically, Bcl3 forms a complex with and deubiquitinates YAP1 and further induces YAP1 to translocate into the nucleus, resulting in Sox9 upregulation and mature hepatocyte conversion. We demonstrate that Bcl3 promotes Sox9HNF4α hepatocytes to participate in liver regeneration, and might therefore be a potential target for enhancing regeneration after liver injury.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8964805PMC
http://dx.doi.org/10.1038/s41419-022-04715-xDOI Listing

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