Abstract

Bile salt-stimulated carboxyl ester lipase (CEL), also called cholesterol esterase, is one of the major proteins secreted by the pancreas. The physiological role of CEL was originally thought to be its mediation of dietary cholesterol absorption. However, recent studies showed no difference between wild type and CEL knockout mice in the total amount of cholesterol absorbed in a single meal. The current study tests the hypothesis that CEL in the intestinal lumen may influence the type of lipoproteins produced. A lipid emulsion containing 4 mm phospholipid, 13.33 mm [(3)H]triolein, and 2.6 mm [(14)C]cholesterol in 19 mm taurocholate was infused into the duodenum of lymph fistula CEL(+/+) and CEL(-/-) mice at a rate of 0.3 ml/h. Results showed no difference between CEL(+/+) and CEL(-/-) mice in the rate of cholesterol and triglyceride transport from the intestinal lumen to the lymph. However, CEL(-/-) mice produced predominantly smaller lipoproteins, whereas the CEL(+/+) mice produced primarily large chylomicrons and very low density lipoprotein. The proximal intestine of CEL(-/-) mice was also found to possess significantly less ceramide hydrolytic activity than that present in CEL(+/+) mice. By using Caco2 cells grown on Transwell membranes as a model, sphingomyelinase treatment inhibited the secretion of larger chylomicron-like lipoproteins without affecting total cholesterol secretion. In contrast, the addition of CEL to the apical medium increased the amount of large lipoproteins produced and alleviated the inhibition induced by sphingomyelinase. Taken together, this study identified a novel and physiologically significant role for CEL, namely the promotion of large chylomicron production in the intestine. The mechanism appears to be mediated through CEL hydrolysis of ceramide generated during the lipid absorption process.

Highlights

  • Bile salt-stimulated carboxyl ester lipase (CEL), called cholesterol esterase, is one of the major proteins secreted by the pancreas

  • Recent studies with CEL gene-targeted mice demonstrated that CEL deficiency did not alter the total amount of cholesterol absorbed from a bolus meal over a 24-h period [17, 18], whether CEL has any influence on the rate of intestinal cholesterol absorption and/or the type of lipoproteins produced in the intestine remains unknown

  • Lipid Absorption Rate and Lymph Lipoprotein Particle Size of CEL(ϩ/ϩ) and CEL(Ϫ/Ϫ) Mice—The role of CEL in intestinal lipid transport was explored by comparing the rate of lymphatic absorption of radiolabeled lipids that were infused into the duodenum in lymph fistula CEL(ϩ/ϩ) and CEL(Ϫ/Ϫ) mice

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Summary

A PROCESS MEDIATED VIA CERAMIDE HYDROLYSIS*

Results showed no difference between CEL(؉/؉) and CEL(؊/؊) mice in the rate of cholesterol and triglyceride transport from the intestinal lumen to the lymph. Recent studies with CEL gene-targeted mice demonstrated that CEL deficiency did not alter the total amount of cholesterol absorbed from a bolus meal over a 24-h period [17, 18], whether CEL has any influence on the rate of intestinal cholesterol absorption and/or the type of lipoproteins produced in the intestine remains unknown. After lipid digestion and solubilization with bile salt micelles in the intestinal lumen (19 –22), lipid nutrients are absorbed by enterocytes, resynthesized, and assembled into lipoproteins (a process that entails shuttling through several intracellular compartments) prior to their secretion into the lymph. Carboxyl Ester Lipase in Intestinal Lipoprotein Production that CEL may influence intestinal lipoprotein assembly and transport

EXPERIMENTAL PROCEDURES
RESULTS
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