ANGPTL3 inhibits lipoprotein lipase activity, decreasing VLDL triglyceride clearance, as shown by enhanced (3)H-triglyceride-labeled VLDL clearance in KK/San mice.
KK/San mutant mice and wild-type KK mice (males, 3-5 months old)
Adenovirus-mediated overexpression of Angptl3 (Ad/Angptl3) or recombinant ANGPTL3 protein
Wild-type KK mice, Ad/lacZ-injected KK/San mice, or baseline (no ANGPTL3)
Plasma lipid levels (triglycerides and cholesterol) and VLDL triglyceride clearancesurrogate
ANGPTL3 acts as a novel lipid metabolism modulator that increases VLDL triglyceride levels by directly inhibiting lipoprotein lipase activity.
Absolute Event Rate: 0% vs 0%
KK/San is a mutant mouse strain established in our laboratory from KK obese mice. KK/San mice show low plasma lipid levels compared with wild-type KK mice despite showing signs of hyperglycemia and hyperinsulinemia. Recently, we identified a mutation in the gene encoding angiopoietin-like protein 3 (Angptl3) in KK/San mice, and injection of adenoviruses encoding Angptl3 or recombinant ANGPTL3 protein to mutant KK/San mice raised plasma lipid levels. To elucidate the regulatory mechanism of ANGPTL3 on lipid metabolism, we focused on the metabolic pathways of triglyceride in the present study. Overexpression of Angptl3 in KK/San mice resulted in a marked increase of triglyceride-enriched very low density lipoprotein (VLDL). In vivo studies using Triton WR1339 revealed that there is no significant difference between mutant and wild-type KK mice in the hepatic VLDL triglyceride secretion rate. However, turnover studies using radiolabeled VLDL revealed that the clearance of (3)H-triglyceride-labeled VLDL was significantly enhanced in KK/San mice, whereas the clearance of (125)I-labeled VLDL was only slightly enhanced. In vitro analysis of recombinant protein revealed that ANGPTL3 directly inhibits LPL activity. These data strongly support the hypothesis that ANGPTL3 is a new class of lipid metabolism modulator, which regulates VLDL triglyceride levels through the inhibition of LPL activity.
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Tetsuya Shimizugawa
Tokyo Medical and Dental University
Mitsuru Ono
Daiichi-Sankyo (Japan)
Mitsuru Shimamura
Tokyo Institute of Technology
Journal of Biological Chemistry
Daiichi Sankyo (Germany)
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Shimizugawa et al. (Sun,) reported a other. ANGPTL3 inhibits lipoprotein lipase activity, decreasing VLDL triglyceride clearance, as shown by enhanced (3)H-triglyceride-labeled VLDL clearance in KK/San mice.
synapsesocial.com/papers/6967d4edc59c9a05920964b1 — DOI: https://doi.org/10.1074/jbc.m203215200
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