1. Lysosomal Acid Lipase Hydrolyzes Retinyl Ester and Affects Retinoid Turnover.
- Author
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Grumet L, Eichmann TO, Taschler U, Zierler KA, Leopold C, Moustafa T, Radovic B, Romauch M, Yan C, Du H, Haemmerle G, Zechner R, Fickert P, Kratky D, Zimmermann R, and Lass A
- Subjects
- Animals, Carboxylic Ester Hydrolases genetics, Cholesterol Esters genetics, Cholesterol Esters metabolism, Chylomicron Remnants genetics, Chylomicron Remnants metabolism, Humans, Mice, Mice, Knockout, Retinoids genetics, Sterol Esterase genetics, Triglycerides genetics, Triglycerides metabolism, Carboxylic Ester Hydrolases metabolism, Duodenum enzymology, Jejunum enzymology, Retinoids metabolism, Sterol Esterase metabolism
- Abstract
Lysosomal acid lipase (LAL) is essential for the clearance of endocytosed cholesteryl ester and triglyceride-rich chylomicron remnants. Humans and mice with defective or absent LAL activity accumulate large amounts of cholesteryl esters and triglycerides in multiple tissues. Although chylomicrons also contain retinyl esters (REs), a role of LAL in the clearance of endocytosed REs has not been reported. In this study, we found that murine LAL exhibits RE hydrolase activity. Pharmacological inhibition of LAL in the human hepatocyte cell line HepG2, incubated with chylomicrons, led to increased accumulation of REs in endosomal/lysosomal fractions. Furthermore, pharmacological inhibition or genetic ablation of LAL in murine liver largely reduced in vitro acid RE hydrolase activity. Interestingly, LAL-deficient mice exhibited increased RE content in the duodenum and jejunum but decreased RE content in the liver. Furthermore, LAL-deficient mice challenged with RE gavage exhibited largely reduced post-prandial circulating RE content, indicating that LAL is required for efficient nutritional vitamin A availability. In summary, our results indicate that LAL is the major acid RE hydrolase and required for functional retinoid homeostasis., (© 2016 by The American Society for Biochemistry and Molecular Biology, Inc.)
- Published
- 2016
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