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Splicing factor SRSF3 is crucial for hepatocyte differentiation and metabolic function

Author

Listed:
  • Supriya Sen

    (Medical Research Service, VA San Diego Healthcare System
    University of California)

  • Hassan Jumaa

    (Center for Biological Signaling Studies BIOSS, Albert-Ludwigs Universität)

  • Nicholas J. G. Webster

    (Medical Research Service, VA San Diego Healthcare System
    University of California)

Abstract

SR family RNA binding proteins regulate splicing of nascent RNAs in vitro but their physiological role in vivo is largely unexplored, as genetic deletion of many SR protein genes results in embryonic lethality. Here we show that SRSF3HKO mice carrying a hepatocyte-specific deletion of Srsf3 (homologous to human SRSF3/SRp20) have a disrupted hepatic architecture and show pre- and postnatal growth retardation. SRSF3HKO mice exhibit impaired hepatocyte maturation with alterations in glucose and lipid homeostasis characterized by reduced glycogen storage, fasting hypoglycemia, increased insulin sensitivity and reduced cholesterol synthesis. We identify various splicing alterations in the SRSF3HKO liver that explain the in vivo phenotype. In particular, loss of SRSF3 causes aberrant splicing of Hnf1α, Ern1, Hmgcs1, Dhcr7 and Scap genes, which are critical regulators of glucose and lipid metabolism. Our study provides the first evidence for a SRSF3-driven genetic programme required for morphological and functional differentiation of hepatocytes that may have relevance for human liver disease and metabolic dysregulation.

Suggested Citation

  • Supriya Sen & Hassan Jumaa & Nicholas J. G. Webster, 2013. "Splicing factor SRSF3 is crucial for hepatocyte differentiation and metabolic function," Nature Communications, Nature, vol. 4(1), pages 1-12, June.
  • Handle: RePEc:nat:natcom:v:4:y:2013:i:1:d:10.1038_ncomms2342
    DOI: 10.1038/ncomms2342
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    Cited by:

    1. Waqar Arif & Bhoomika Mathur & Michael F. Saikali & Ullas V. Chembazhi & Katelyn Toohill & You Jin Song & Qinyu Hao & Saman Karimi & Steven M. Blue & Brian A. Yee & Eric L. Nostrand & Sushant Bangru &, 2023. "Splicing factor SRSF1 deficiency in the liver triggers NASH-like pathology and cell death," Nature Communications, Nature, vol. 14(1), pages 1-19, December.

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