2023
DOI: 10.1146/annurev-nutr-062220-112240
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The Multifunctional Family of Mammalian Fatty Acid–Binding Proteins

Abstract: Fatty acid–binding proteins (FABPs) are small lipid-binding proteins abundantly expressed in tissues that are highly active in fatty acid (FA) metabolism. Ten mammalian FABPs have been identified, with tissue-specific expression patterns and highly conserved tertiary structures. FABPs were initially studied as intracellular FA transport proteins. Further investigation has demonstrated their participation in lipid metabolism, both directly and via regulation of gene expression, and in signaling within their cel… Show more

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Cited by 13 publications
(10 citation statements)
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“…FABPs contain approximately 126–134 amino acids and are approximately 14–15 kDa in molecular weight. FABPs mainly bind fatty acids as ligands, and one FABP molecule usually binds one ligand (except for FABP1 and 6 with two ligands per protein) . The β-barrel of the lipocalin domain differs slightly from that of RBPs and LCNs, with ten β-strands connected by loops and is capped with a αI helix-turn-αII helix lid.…”
Section: Fabpsmentioning
confidence: 99%
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“…FABPs contain approximately 126–134 amino acids and are approximately 14–15 kDa in molecular weight. FABPs mainly bind fatty acids as ligands, and one FABP molecule usually binds one ligand (except for FABP1 and 6 with two ligands per protein) . The β-barrel of the lipocalin domain differs slightly from that of RBPs and LCNs, with ten β-strands connected by loops and is capped with a αI helix-turn-αII helix lid.…”
Section: Fabpsmentioning
confidence: 99%
“…Almost all FABPs are intracellular proteins that transport ligands between subcellular compartmentations to exert multiple biological functions and participate in the pathogenesis of disease that include metabolic disorders (e.g., diabetes, obesity, and nonalcoholic steatohepatitis), inflammatory disease (e.g., atherosclerosis and multiple sclerosis), , and cancers in multiple regions …”
Section: Fabpsmentioning
confidence: 99%
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