Molecular mechanisms of lipotoxicity and glucotoxicity in nonalcoholic fatty liver disease

Metabolism. 2016 Aug;65(8):1049-61. doi: 10.1016/j.metabol.2016.02.014. Epub 2016 Mar 3.

Abstract

The exposure of hepatocytes to high concentrations of lipids and carbohydrates and the ensuing hepatocellular injury are termed lipotoxicity and glucotoxicity, respectively. A common denominator is metabolic derangement, especially in regards to intracellular energy homeostasis, which is brought on by glucose intolerance and insulin resistance in tissues. In this review, we highlight the lipids and carbohydrates that provoke hepatocyte injury and the mechanisms involved in lipotoxicity and glucotoxicity, including endoplasmic reticulum stress, oxidative stress and mitochondrial impairment. Through upregulation of proteins involved in various pathways including PKR-like ER kinase (PERK), CCAAT/enhancer-binding homologous protein (CHOP), c-Jun NH2-terminal kinase-1 (JNK), Bcl-2 interacting mediator (BIM), p53 upregulated modulator of apoptosis (PUMA), and eventually caspases, hepatocytes in lipotoxic states ultimately undergo apoptosis. The protective role of certain lipids and possible targets for pharmacological therapy are explored. Finally, we discuss the role of high fructose and glucose diets in contributing to organelle impairment and poor glucose transport mechanisms, which perpetuate hyperglycemia and hyperlipidemia by shunting of excess carbohydrates into lipogenesis.

Keywords: CHOP; JNK; Lipid; NASH; Oxidative stress.

Publication types

  • Review

MeSH terms

  • Endoplasmic Reticulum Stress / physiology*
  • Glucose Intolerance / metabolism*
  • Glucose Intolerance / pathology
  • Humans
  • Insulin Resistance / physiology*
  • JNK Mitogen-Activated Protein Kinases / metabolism
  • Mitochondria / metabolism
  • Non-alcoholic Fatty Liver Disease / metabolism*
  • Non-alcoholic Fatty Liver Disease / pathology
  • Oxidative Stress / physiology*
  • Signal Transduction / physiology
  • Transcription Factor CHOP / metabolism

Substances

  • DDIT3 protein, human
  • Transcription Factor CHOP
  • JNK Mitogen-Activated Protein Kinases