CEFYBO   02669
CENTRO DE ESTUDIOS FARMACOLOGICOS Y BOTANICOS
Unidad Ejecutora - UE
artículos
Título:
Cellular Location of HNF4A is Linked With Terminal Liver Failure in Humans
Autor/es:
FRAUNHOFFER NICOLAS A.; OSTROWSKA, ALINA ; HAEP, NILS; COLLIN DE LHORTET, ALEXANDRA ; FLORENTINO, RODRIGO; MUKHERJEE, AMITAVA ; TAKEISHI, KAZUKI ; PARANJPE, SHIRISH ; ANIMASAHUN, OLAMIDE ; NAGRATH, DEEPAK ; AGARWAL, NANDINI; SOTO-GUTIERREZ, ALEJANDRO ; TAFALENG, EDGAR N. ; BANERJEE, SWATI ; BELL, AARON; FOX, IRA J. ; MORITA, KAZUTOYO ; ACHREJA, ABHINAV ; ARAZOV, SHOHRAT; GUZMAN-LEPE, JORGE; TROY, KRIS ; MICHALOPOULOS, GEORGE K.; HAINER, SARAH J.
Revista:
Hepatology Communication
Editorial:
JOHN WILEY & SONS INC
Referencias:
Lugar: New York; Año: 2020
Resumen:
Hepatocyte nuclear factor 4 alpha (HNF4α) is a transcription factor that plays a critical role in hepatocyte function, and HNF4α-based reprogramming corrects terminal liver failure in rats with chronic liver disease. In the livers of patients with advanced cirrhosis, HNF4α RNA expression levels decrease as hepatic function deteriorates, and protein expression is found in the cytoplasm. These findings could explain impaired hepatic function in patients with degenera-tive liver disease. In this study, we analyzed HNF4α localization and the pathways involved in post-translational modi-fication of HNF4α in human hepatocytes from patients with decompensated liver function. RNA-sequencing analysis revealed that AKT-related pathways, specifically phospho-AKT, is down-regulated in cirrhotic hepatocytes from pa-tients with terminal failure, in whom nuclear levels of HNF4α were significantly reduced, and cytoplasmic expression of HNF4α was increased. cMET was also significantly reduced in failing hepatocytes. Moreover, metabolic profiling showed a glycolytic phenotype in failing human hepatocytes. The contribution of cMET and phospho-AKT to nu-clear localization of HNF4α was confirmed using Spearman?s rank correlation test and pathway analysis, and further correlated with hepatic dysfunction by principal component analysis. HNF4α acetylation, a posttranslational modifica-tion important for nuclear retention, was also significantly reduced in failing human hepatocytes when compared with normal controls. Conclusion: These results suggest that the alterations in the cMET-AKT pathway directly correlate with HNF4α localization and level of hepatocyte dysfunction. This study suggests that manipulation of HNF4α and pathways involved in HNF4α posttranslational modification may restore hepatocyte function in patients with terminal liver failure.