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Publication : Disrupting Hepatocyte Cyp51 from Cholesterol Synthesis Leads to Progressive Liver Injury in the Developing Mouse and Decreases RORC Signalling.

First Author  Urlep Ž Year  2017
Journal  Sci Rep Volume  7
Pages  40775 PubMed ID  28098217
Mgi Jnum  J:272230 Mgi Id  MGI:6282356
Doi  10.1038/srep40775 Citation  Urlep Z, et al. (2017) Disrupting Hepatocyte Cyp51 from Cholesterol Synthesis Leads to Progressive Liver Injury in the Developing Mouse and Decreases RORC Signalling. Sci Rep 7:40775
abstractText  Development of mice with hepatocyte knockout of lanosterol 14alpha-demethylase (H(Cyp51-/-)) from cholesterol synthesis is characterized by the progressive onset of liver injury with ductular reaction and fibrosis. These changes begin during puberty and are generally more aggravated in the knockout females. However, a subgroup of (pre)pubertal knockout mice (runts) exhibits a pronounced male prevalent liver dysfunction characterized by downregulated amino acid metabolism and elevated Casp12. RORC transcriptional activity is diminished in livers of all runt mice, in correlation with the depletion of potential RORC ligands subsequent to CYP51 disruption. Further evidence for this comes from the global analysis that identified a crucial overlap between hepatic Cyp51(-/-) and Rorc(-/-) expression profiles. Additionally, the reduction in RORA and RORC transcriptional activity was greater in adult H(Cyp51-/-) females than males, which correlates well with their downregulated amino and fatty acid metabolism. Overall, we identify a global and sex-dependent transcriptional de-regulation due to the block in cholesterol synthesis during development of the Cyp51 knockout mice and provide in vivo evidence that sterol intermediates downstream of lanosterol may regulate the hepatic RORC activity.
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