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Center for Lipid and Arteriosclerosis Studies, Department of Pathology and Laboratory Medicine, University of Cincinnati College of Medicine, Cincinnati, Ohio 45267
Group 1B
phospholipase A2 (PLA2) is an abundant
lipolytic enzyme that is well characterized biochemically and
structurally. Because of its high level of expression in the pancreas,
it has been presumed that PLA2 plays a role in the
digestion of dietary lipids, but in vivo data have been lacking to
support this theory. Our initial study on mice lacking PLA2
demonstrated no abnormalities in dietary lipid absorption in mice
consuming a chow diet. However, the effects of PLA2
deficiency on animals consuming a high-fat diet have not been studied.
To investigate this, PLA2+/+ and
PLA2
/
mice were fed a western
diet for 16 wk. The results showed that PLA2
/
mice were resistant to
high-fat diet-induced obesity. This observed weight difference was due
to decreased adiposity present in the PLA2
/
mice. Compared with
PLA2+/+ mice, the
PLA2
/
mice had 60% lower plasma
insulin and 72% lower plasma leptin levels after high-fat diet
feeding. The PLA2
/
mice also did
not exhibit impaired glucose tolerance associated with the development
of obesity-related insulin resistance as observed in the
PLA2+/+ mice. To investigate the
mechanism by which PLA2
/
mice
exhibit decreased weight gain while on a high-fat diet, fat absorption
studies were performed. The
PLA2
/
mice displayed 50 and 35%
decreased plasma [3H]triglyceride concentrations 4 and
6 h, respectively, after feeding on a lipid-rich meal containing
[3H]triolein. The PLA2
/
mice also displayed increased lipid content in the stool, thus indicating decreased fat absorption in these animals. These results suggest a novel role for PLA2 in the protection against
diet-induced obesity and obesity-related insulin resistance, thereby
offering a new target for treatment of obesity and diabetes.
phospholipase A2; lipase; pancreatic enzymes; animal models; lipid absorption
This article has been cited by other articles:
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S. Bao, D. A. Jacobson, M. Wohltmann, A. Bohrer, W. Jin, L. H. Philipson, and J. Turk Glucose homeostasis, insulin secretion, and islet phospholipids in mice that overexpress iPLA2{beta} in pancreatic {beta}-cells and in iPLA2{beta}-null mice Am J Physiol Endocrinol Metab, February 1, 2008; 294(2): E217 - E229. [Abstract] [Full Text] [PDF] |
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