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May 1, 1995Journal of Biological Chemistry111 citationsOpen Access

COOH-terminal Disruption of Lipoprotein Lipase in Mice Is Lethal in Homozygotes, but Heterozygotes Have Elevated Triglycerides and Impaired Enzyme Activity

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TCTrey ColemanRSRichard L. SeipJGJeffrey M. Gimble

Structured PICO

Does targeted disruption of the LPL gene affect viability and triglyceride levels in mice?

P
Population
Mice with targeted disruption of the lipoprotein lipase (LPL) gene at the COOH terminus (homozygous -/-, heterozygous +/-, and wild type +/+ littermates)
I
Intervention
Targeted disruption of the LPL gene COOH terminus
C
Comparator
Wild type (+/+) littermates
O
Outcome
Viability, serum triglyceride levels, and LPL enzyme activitysurrogate

Homozygous disruption of the LPL gene COOH terminus is lethal in mice, while heterozygous disruption causes mild to moderate hypertriglyceridemia, providing a useful model to study its role in atherosclerosis.

Abstract

The role of the enzyme lipoprotein lipase (LPL) in atherosclerosis is uncertain. To generate an animal model of LPL deficiency, we targeted the LPL gene in embryonic stem cells with a vector designed to disrupt the COOH terminus of the protein and used these cells to generate LPL-deficient mice. Germ line transmission of the disrupted LPL allele was achieved with two chimeric males, and offspring from each of these animals were phenotypically identical. Pups homozygous (-/-) for LPL deficiency died within 48 h of birth with extreme elevations of serum triglycerides (13,327 mg/dl) associated with essentially absent LPL enzyme activity in heart and carcass. Newborn heterozygous (+/-) LPL-deficient pups had lower LPL enzyme activity and higher triglycerides (370 versus 121 mg/dl) than wild type (+/+) littermates. Adult heterozygotes had higher triglycerides than wild type mice with ad libitum feeding (236 mg/dl for +/- versus 88 mg/dl for +/+) and after fasting for 4 h (98 mg/dl for +/- versus 51 for +/+) or 12 h (109 mg/dl for +/- versus 56 mg/dl for +/+). Triglycerides were present as very low density lipoprotein particles and chylomicrons, but high density lipoprotein cholesterol levels were not decreased in +/- animals. Plasma heparin-releasable LPL activity was 43% lower in +/- versus +/+ adult animals. LPL activity, mRNA, and protein were lower in the tissues of +/- versus +/+ mice. Homozygous LPL deficiency caused by disruption of the COOH terminus of the enzyme is lethal in mice. Heterozygous LPL deficiency caused by this mutation is associated with mild to moderate hypertriglyceridemia without affecting static HDL cholesterol levels. Heterozygous LPL-deficient mice could be useful for determining if hypertriglyceridemia, independently or in combination with other discrete defects, influences atherosclerosis.

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Cite This Study

Coleman et al. (1995) studied this question.

synapsesocial.com/papers/6a7142565d37378ac1de6a19https://doi.org/10.1074/jbc.270.21.12518
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