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October 7, 2016G3 Genes Genomes Genetics9 citationsOpen Access

Effect of Two Lipoprotein (a)-Associated Genetic Variants on Plasminogen Levels and Fibrinolysis

HWHong WangJiangsu UniversityCHChan E HongUniversity of Maryland, BaltimoreJLJoshua P. LewisUniversity of Maryland, Baltimore

Structured PICO

Are LPA genetic variants rs3798220 and rs10455872 associated with altered plasminogen levels and fibrinolysis?

P
Population
146 subjects from the Old Order Amish (OOA) selected based on carrier status for rs3798220 and rs10455872, matched for age and gender, plus liver samples from 76 Caucasian subjects.
I
Intervention
Carrier status for LPA genetic variants rs3798220 and rs10455872
C
Comparator
Noncarrier status for the same genetic variants
O
Outcome
Plasma Lp(a) levels, plasminogen levels, and clot lysis timesurrogate

LPA genetic variants associated with cardiovascular disease increase Lp(a) levels but do not modulate plasma plasminogen levels or fibrinolysis.

Abstract

Abstract Two genetic variants (rs3798220 and rs10455872) in the apolipoprotein (a) gene (LPA) have been implicated in cardiovascular disease (CVD), presumably through their association with lipoprotein (a) Lp(a) levels. While Lp(a) is recognized as a lipoprotein with atherogenic and thrombogenic characteristics, it is unclear whether or not the two Lp(a)-associated genetic variants are also associated with markers of thrombosis (i.e., plasminogen levels and fibrinolysis). In the present study, we genotyped the two genetic variants in 2919 subjects of the Old Order Amish (OOA) and recruited 146 subjects according to the carrier and noncarrier status for rs3798220 and rs10455872, and also matched for gender and age. We measured plasma Lp(a) and plasminogen levels in these subjects, and found that the concentrations of plasma Lp(a) were 2.62- and 1.73-fold higher in minor allele carriers of rs3798220 and rs10455872, respectively, compared with noncarriers (P = 2.04 × 10−17 and P = 1.64 × 10−6, respectively). By contrast, there was no difference in plasminogen concentrations between carriers and noncarriers of rs3798220 and rs10455872. Furthermore, we observed no association between carrier status of rs3798220 or rs10455872 with clot lysis time. Finally, plasminogen mRNA expression in liver samples derived from 76 Caucasian subjects was not significantly different between carriers and noncarriers of these two genetic variants. Our results provide further insight into the mechanism of action behind two genetic variants previously implicated in CVD risk and show that these polymorphisms are not major modulating factors for plasma plasminogen levels and fibrinolysis.

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Cite This Study

Wang et al. (2016) studied this question.

synapsesocial.com/papers/6a205f64d1ccedb5f95ae0b2https://doi.org/10.1534/g3.116.034702
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Haplotype of the Lipoprotein(a) Gene Variants rs10455872 and rs3798220 Is Associated with Parameters of Coagulation, Fibrinolysis, and Inflammation in Patients after Myocardial Infarction and Highly Elevated Lipoprotein(a) Values2024 · 6 citations
  2. 2A Polymorphism in the Protease-Like Domain of Apolipoprotein(a) Is Associated With Severe Coronary Artery Disease2007 · 164 citations
  3. 3Genetically Predicted Levels of Lipoprotein(a) and Risk of Cerebrovascular Disease2026 · 4 citations
  4. 4Association of <i>LPA</i> Variants With Aortic Stenosis2017 · 63 citations
  5. 5Abstract A015: Genetically Predicted Levels of Lipoprotein(a) and Risk of Cerebrovascular Disease2026