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Publication : RNA-binding protein SPEN controls hepatocyte maturation via regulating Hnf4α expression during liver development.

First Author  Zhang J Year  2023
Journal  Biochem Biophys Res Commun Volume  642
Pages  128-136 PubMed ID  36577249
Mgi Jnum  J:332871 Mgi Id  MGI:7430494
Doi  10.1016/j.bbrc.2022.12.057 Citation  Zhang J, et al. (2023) RNA-binding protein SPEN controls hepatocyte maturation via regulating Hnf4alpha expression during liver development. Biochem Biophys Res Commun 642:128-136
abstractText  Liver organogenesis is a complex process. Although many signaling pathways and key factors have been identified during liver development, little is known about the regulation of late liver development, especially liver maturation. As a transcriptional repressor, SPEN has been demonstrated to interact with lncRNAs and transcription factors to participate in X chromosome inactivation, neural development, and lymphocyte differentiation. General disruption of SPEN results in embryonic lethality accompanied by hampered liver development in mice. However, the function of SPEN in embryonic liver development has not been reported. In this study, we demonstrate that SPEN is required for hepatocyte maturation using hepatocyte-specific disruption of SPEN with albumin-Cre-mediated knockout. SPEN expression was upregulated in hepatocytes along with liver development in mice. The deletion of the SPEN gene repressed hepatic maturation, mainly by a decrease in hepatic metabolic function and disruption of hepatocyte zonation. Additional experiments revealed that transcription factors which control hepatocyte maturation were strongly downregulated in SPEN-deficient hepatocytes, especially Hnf4alpha. Furthermore, restoration of Hnf4alpha levels partially rescued the immature state of hepatocytes caused by SPEN gene deletion. Taken together, these results reveal an unexpected role of SPEN in liver maturation.
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