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December 16, 2012Circulation Cardiovascular Genetics61 citationsOpen Access

The Impact of Partial and Complete Loss-of-Function Mutations in Endothelial Lipase on High-Density Lipoprotein Levels and Functionality in Humans

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RSRoshni R. SingarajaNational University of SingaporeSSSuthesh SivapalaratnamQueen Mary University of LondonKHKees HovinghNovo Nordisk (Denmark)

Structured PICO

Do loss-of-function mutations in endothelial lipase increase high-density lipoprotein levels and functionality, and reduce coronary artery disease in humans?

P
Population
Individuals with high-density lipoprotein cholesterol carrying LIPG mutations, and 4 independent cohorts for coronary artery disease assessment
I
Intervention
Complete loss-of-function (LOF) mutations in endothelial lipase (LIPG)
C
Comparator
Partial LOF mutations in LIPG and/or non-carriers
O
Outcome
Plasma high-density lipoprotein cholesterol levels, cholesterol efflux acceptor capacity, and coronary artery diseasesurrogate

Loss-of-function mutations in endothelial lipase increase HDL cholesterol levels and functionality, and are associated with a reduced risk of coronary artery disease, suggesting endothelial lipase antagonism may offer cardioprotection.

Abstract

BACKGROUND: Endothelial lipase is a phospholipase with activity against high-density lipoprotein. Although a small number of mutations in LIPG have been described, the role of LIPG in protection against atherosclerosis is unclear. METHODS AND RESULTS: We identified 8 loss-of-function (LOF) mutations in LIPG in individuals with high-density lipoprotein cholesterol. Functional analysis confirmed that most rare mutations abolish lipase activity in vitro, indicating complete LOF, whereas 2 more common mutations N396S and R476W reduce activity by ≈50%, indicating partial LOF and implying ≈50% and ≈75% remaining endothelial lipase function in heterozygous complete LOF and partial LOF mutation carriers, respectively. complete LOF mutation carriers had significantly higher plasma high-density lipoprotein cholesterol levels compared with partial LOF mutation carriers. Apolipoprotein B-depleted serum from complete LOF carriers showed significantly enhanced cholesterol efflux acceptor capacity, whereas only trends were observed in partial LOF carriers. Carriers of LIPG mutations exhibited trends toward reduced coronary artery disease in 4 independent cohorts (meta-analysis odds ratio, 0.7; P=0.04). CONCLUSIONS: Our data suggest that the impact of LIPG mutations is directly related to their effect on endothelial lipase function and support that antagonism of endothelial lipase function improves cardioprotection.

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Cite This Study

Singaraja et al. (2012) studied this question.

synapsesocial.com/papers/6a70fbbdce524a4339c4a200https://doi.org/10.1161/circgenetics.111.962613
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