4.8 Article

Integrated Multiomics Reveals Glucose Use Reprogramming and Identifies a Novel Hexokinase in Alcoholic Hepatitis

期刊

GASTROENTEROLOGY
卷 160, 期 5, 页码 1725-+

出版社

W B SAUNDERS CO-ELSEVIER INC
DOI: 10.1053/j.gastro.2020.12.008

关键词

Alcoholic Liver Disease; Metabolomics; Therapeutic Targets

资金

  1. Mexican National Council of Science and Technology (Mexico City, Mexico)
  2. Fondo de Investigacion Sanitaria Carlos III
  3. Fondo Europeo de Desarrollo Regional, Union Europea, Una manera de hacer Europa [PI17/00673, PI20/00765, CPII16/0004]
  4. National Institutes of Health (NIH)/National Institute on Alcohol Abuse and Alcoholism (NIAAA) [P50AA027054]
  5. NIH/NIAAA [R24 AA025017, AA026972, AA026978, AA026264]
  6. Spanish MINECO [BFU2017-84345-P]
  7. CIBER de Diabetes y Enfermedades Metabolicas
  8. National Institute of Diabetes and Digestive and Kidney Diseases [P30DK120531]
  9. MRC [MR/R023026/1] Funding Source: UKRI

向作者/读者索取更多资源

Metabolomic and transcriptomic analyses revealed extensive reprogramming of glucose metabolism in alcoholic hepatitis, with up-regulated expression of HKDC1 contributing to dysregulation of glucose metabolism. HKDC1 may serve as a novel biomarker and therapeutic target for AH.
BACKGROUND & AIMS: We recently showed that alcoholic hepatitis (AH) is characterized by dedifferentiation of hepatocytes and loss of mature functions. Glucose metabolism is tightly regulated in healthy hepatocytes. We hypothesize that AH may lead to metabolic reprogramming of the liver, including dysregulation of glucose metabolism. METHODS: We performed integrated metabolomic and transcriptomic analyses of liver tissue from patients with AH or alcoholic cirrhosis or normal liver tissue from hepatic resection. Focused analyses of chromatin immunoprecipitation coupled to DNA sequencing was performed. Functional in vitro studies were performed in primary rat and human hepatocytes and HepG2 cells. RESULTS: Patients with AH exhibited specific changes in the levels of intermediates of glycolysis/gluconeogenesis, the tricarboxylic acid cycle, and monosaccharide and disaccharide metabolism. Integrated analysis of the transcriptome and metabolome showed the used of alternate energetic pathways, metabolite sinks and bottlenecks, and dysregulated glucose storage in patients with AH. Among genes involved in glucose metabolism, hexokinase domain containing 1 (HKDC1) was identified as the most up-regulated kinase in patients with AH. Histone active promoter and enhancer markers were increased in the HKDC1 genomic region. High HKDC1 levels were associated with the development of acute kidney injury and decreased survival. Increased HKDC1 activity contributed to the accumulation of glucose-6-P and glycogen in primary rat hepatocytes. CONCLUSIONS: Altered metabolite levels and messenger RNA expression of metabolic enzymes suggest the existence of extensive reprogramming of glucose metabolism in AH. Increased HKDC1 expression may contribute to dysregulated glucose metabolism and represents a novel biomarker and therapeutic target for AH.

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