Overexpressing Human Lipoprotein Lipase in Mouse Skeletal Muscle Is Associated With Insulin Resistance
- 1 May 2001
- journal article
- Published by American Diabetes Association in Diabetes
- Vol. 50 (5) , 1064-1068
- https://doi.org/10.2337/diabetes.50.5.1064
Abstract
Lipoprotein lipase (LPL) plays a rate-limiting role in triglyceride-rich lipoprotein metabolism and is expressed in most tissues. Overexpression of LPL in skeletal muscle has been linked with higher plasma glucose levels suggesting insulin resistance (Jensen et al., Am J Physiol 273:R683–R689, 1997). The aim of our study was to ascertain whether the overexpression of human LPL in skeletal muscle leads to insulin resistance and to investigate the mechanism. Respiratory quotient measurements in both transgenic (MCKhLPL) and nontransgenic mice on a high-carbohydrate diet were conducted and showed a shift in fuel usage in transgenic mice when fasting but not when actively feeding. An increase in citrate and glucose 6-phosphate levels in fasted MCKhLPL mice further supports this preferential use of lipids. When challenged with an intraperitoneal injection of glucose (1 g/kg), MCKhLPL mice had a higher plasma glycemic excursion than nontransgenic mice. No differences in insulin response were observed between the two groups. Further investigation using hyperinsulinemic-euglycemic clamps revealed insulin resistance in MCKhLPL mice. Despite signs of insulin resistance, there was no associated increase in free fatty acids, hypertriglyceridemia, or hyperinsulinemia in MCKhLPL mice. In conclusion, MCKhLPL mice are insulin resistant, presumably due to increased delivery of lipoprotein-derived fatty acids to muscle.Keywords
This publication has 26 references indexed in Scilit:
- 8 Skeletal Muscle Lipoprotein LipaseExercise and Sport Sciences Reviews, 1998
- Overexpression of Human Lipoprotein Lipase Protects Diabetic Transgenic Mice From Diabetic Hypertriglyceridemia and HypercholesterolemiaArteriosclerosis, Thrombosis, and Vascular Biology, 1995
- Tissue Oxidative Capacity, Fuel Stores and Skeletal Muscle Fatty Acid Composition In Obesity‐Prone and Obesity‐Resistant RatsObesity Research, 1995
- Exogenous Triacylglycerol Inhibits Insulin-Stimulated Glucose Transport in L6 Muscle Cells in VitroBiochemical and Biophysical Research Communications, 1995
- Relationship between skeletal muscle lipoprotein lipase activity and 24-hour macronutrient oxidation.Journal of Clinical Investigation, 1993
- Influence of Dietary Fat Composition on Development of Insulin Resistance in Rats: Relationship to Muscle Triglyceride and ω-3 Fatty Acids in Muscle PhospholipidDiabetes, 1991
- Influence of dietary fat composition on development of insulin resistance in rats. Relationship to muscle triglyceride and omega-3 fatty acids in muscle phospholipidDiabetes, 1991
- Lipoprotein LipaseNew England Journal of Medicine, 1989
- Allosteric regulatory properties of muscle phosphofructokinaseMolecular and Cellular Biochemistry, 1983
- THE GLUCOSE FATTY-ACID CYCLE ITS ROLE IN INSULIN SENSITIVITY AND THE METABOLIC DISTURBANCES OF DIABETES MELLITUSPublished by Elsevier ,1963