Journal of Lipid Research · 2010 · 43 citations · 32 references
Insulin SignalingMetabolic SyndromeMetabolic SignalingCell SignalingLipid LigandsBiochemistryLipid ScienceLcfa MetabolismCell BiologyProtein InteractionLipidic LigandsNatural SciencesPhysiologyDiabetesMetabolic RegulationLipoprotein MetabolismCellular BiochemistryMetabolismMedicineLipid Synthesis
Although the pathophysiology of diabetes is characterized by elevated levels of glucose and long-chain fatty acids (LCFA), nuclear mechanisms linking glucose and LCFA metabolism are poorly understood. As the liver fatty acid binding protein (L-FABP) shuttles LCFA to the nucleus, where L-FABP directly interacts with peroxisome proliferator-activated receptor-α (PPARα), the effect of glucose on these processes was examined. In vitro studies showed that L-FABP strongly bound glucose and glucose-1-phosphate (K(d) = 103 ± 19 nM and K(d) = 20 ± 3 nM, respectively), resulting in altered L-FABP conformation, increased affinity for lipid ligands, and enhanced interaction with PPARα. In living cells, glucose stimulated cellular uptake and nuclear localization of a nonmetabolizable fluorescent fatty acid analog (BODIPY C-16), particularly in the presence of L-FABP. These data suggest for the first time a direct role of glucose in facilitating L-FABP-mediated uptake and distribution of lipidic ligands to the nucleus for regulation of PPARα transcriptional activity.
32
Narasimha Sreerama, Robert W. Woody · Analytical Biochemistry · 2000 · 3K citations
Biochemistry, Biomolecular Structure Prediction, Protein Folding +13
Textbook of Biochemistry with Clinical Correlations
Biochemical Education · 1983 · 921 citations
Christian Wolfrum, Carola M. Borrmann, Torsten Börchers et al. · Proceedings of the National Academy of Sciences · 2001 · 499 citations · Full text