Transient hepatic steatosis upon liver resection supposes functional relationships between lipid metabolism and liver regeneration. Repin1 has been suggested as candidate gene for obesity and dyslipidemia by regulating key genes of lipid metabolism and lipid storage. Herein, we characterized the regenerative potential of mice with a hepatic deletion of Repin1 (LRep1-/-) after partial hepatectomy (PH) in order to determine the functional significance of Repin1 in liver regeneration. Lipid dynamics and the regenerative response were analyzed at various time points after PH. Hepatic Repin1 deficiency causes a significantly decreased transient hepatic lipid accumulation. Defects in lipid uptake, as analyzed by decreased expression of the fatty acid transporter Cd36 and Fatp5, may contribute to attenuated and shifted lipid accumulation, accompanied by altered extent and chronological sequence of liver cell proliferation in LRep1-/- mice. In vitro steatosis experiments with primary hepatocytes also revealed attenuated lipid accumulation and occurrence of smaller lipid droplets in Repin1-deficient cells, while no direct effect on proliferation in HepG2 cells was observed. Based on these results, we propose that hepatocellular Repin1 might be of functional significance for early accumulation of lipids in hepatocytes after PH, facilitating efficient progression of liver regeneration.
SEEK ID: https://seek.lisym.org/publications/108
PubMed ID: 30442920
Projects: LiSyM Pillar I: Early Metabolic Injury (LiSyM-EMI)
Publication type: Not specified
Journal: Sci Rep
Citation: Sci Rep. 2018 Nov 15;8(1):16858. doi: 10.1038/s41598-018-35325-3.
Date Published: 18th Jan 2018
Registered Mode: Not specified
Views: 3414
Created: 13th Dec 2018 at 12:52
Last updated: 8th Mar 2024 at 07:44
This item has not yet been tagged.
None