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- W2068992647 abstract "Members of the lipin protein family are phosphatidate phosphatase (PAP) enzymes, which catalyze the dephosphorylation of phosphatidic acid to diacylglycerol, the penultimate step in TAG synthesis. Lipins are unique among the glycerolipid biosynthetic enzymes in that they also promote fatty acid oxidation through their activity as co-regulators of gene expression by DNA-bound transcription factors. Lipin function has been evolutionarily conserved from a single ortholog in yeast to the mammalian family of three lipin proteins-lipin-1, lipin-2, and lipin-3. In mice and humans, the levels of lipin activity are a determinant of TAG storage in diverse cell types, and humans with deficiency in lipin-1 or lipin-2 have severe metabolic diseases. Recent work has highlighted the complex physiological interactions between members of the lipin protein family, which exhibit both overlapping and unique functions in specific tissues. The analysis of lipinopathies in mouse models and in humans has revealed an important role for lipin activity in the regulation of lipid intermediates (phosphatidate and diacylglycerol), which influence fundamental cellular processes including adipocyte and nerve cell differentiation, adipocyte lipolysis, and hepatic insulin signaling. The elucidation of lipin molecular and physiological functions could lead to novel approaches to modulate cellular lipid storage and metabolic disease." @default.
- W2068992647 created "2016-06-24" @default.
- W2068992647 creator A5019944871 @default.
- W2068992647 creator A5029940065 @default.
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- W2068992647 creator A5068606823 @default.
- W2068992647 creator A5085755071 @default.
- W2068992647 date "2013-07-01" @default.
- W2068992647 modified "2023-09-29" @default.
- W2068992647 title "Lipins, lipinopathies, and the modulation of cellular lipid storage and signaling" @default.
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