Evidence for a Major Quantitative Trait Locus on Chromosome 17q21 Affecting Low-Density Lipoprotein Peak Particle Diameter
- 13 May 2003
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation
- Vol. 107 (18) , 2361-2368
- https://doi.org/10.1161/01.cir.0000065577.60129.f5
Abstract
Background— Several lines of evidence suggest that small dense LDL particles are associated with the risk of coronary heart disease. Heritability and segregation studies suggest that LDL particle size is characterized by a large genetic contribution and the presence of a putative major genetic locus. However, association and linkage analyses have thus far been inconclusive in identifying the underlying gene(s). Methods and Results— An autosomal genome-wide scan for LDL peak particle diameter (LDL-PPD) was performed in the Québec Family Study. A total of 442 markers were genotyped, with an average intermarker distance of 7.2 cM. LDL-PPD was measured by gradient gel electrophoresis in 681 subjects from 236 nuclear families. Linkage was tested by both sib-pair–based and variance components–based linkage methods. The strongest evidence of linkage was found on chromosome 17q21.33 at marker D17S1301, with an LOD score of 6.76 by the variance-components method for the phenotype adjusted for age, body mass index, and triglyceride levels. Similar results were obtained with the sib-pair method ( P P ≤0.0023; LOD ≥1.75) include 1p31, 2q33.2, 4p15.2, 5q12.3, and 14q31. Several candidate genes are localized under the peak linkages, including apolipoprotein H on chromosome 17q, the apolipoprotein E receptor 2, and members of the phospholipase A 2 family on chromosome 1p as well as HMG-CoA reductase on chromosome 5q. Conclusions— This genome-wide scan for LDL-PPD indicates the presence of a major quantitative trait locus located on chromosome 17q and others interesting loci influencing the phenotype.Keywords
This publication has 30 references indexed in Scilit:
- The Future of Path Analysis, Segregation Analysis, and Combined Models for Genetic Dissection of Complex TraitsHuman Heredity, 1999
- Linkage of Low-Density Lipoprotein Size to the Lipoprotein Lipase Gene in Heterozygous Lipoprotein Lipase DeficiencyAmerican Journal of Human Genetics, 1999
- Families with Familial Combined Hyperlipidemia and Families Enriched for Coronary Artery Disease Share Genetic Determinants for the Atherogenic Lipoprotein PhenotypeAmerican Journal of Human Genetics, 1998
- Candidate-Gene Studies of the Atherogenic Lipoprotein Phenotype: A Sib-Pair Linkage Analysis of DZ Women TwinsAmerican Journal of Human Genetics, 1998
- The atherogenic lipoprotein phenotype is not caused by a mutation in the coding region of the low density lipoprotein receptor geneClinical Genetics, 1997
- Influence of apolipoprotein H polymorphism on levels of triglyceridesAtherosclerosis, 1994
- Low density lipoprotein isolated from patients with essential hypertension exhibits increased propensity for oxidation and enhanced uptake by macrophages: a possible role for angiotensin IIAtherosclerosis, 1994
- Relationship between apolipoprotein E and low density lipoprotein particle sizeAtherosclerosis, 1993
- The NHLBI Twin Study: heritability of apolipoprotein A-I, B, and low density lipoprotein subclasses and concordance for lipoprotein(a)Atherosclerosis, 1991
- Activation of human post heparin lipoprotein lipase by apolipoprotein H (β2-glycoprotein I)Biochemical and Biophysical Research Communications, 1980