Polygenic determinants in extremes of high-density lipoprotein cholesterol. 2017

Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
Department of Biochemistry, Schulich School of Medicine and Dentistry, Western University, London, Ontario, Canada.

HDL cholesterol (HDL-C) remains a superior biochemical predictor of CVD risk, but its genetic basis is incompletely defined. In patients with extreme HDL-C concentrations, we concurrently evaluated the contributions of multiple large- and small-effect genetic variants. In a discovery cohort of 255 unrelated lipid clinic patients with extreme HDL-C levels, we used a targeted next-generation sequencing panel to evaluate rare variants in known HDL metabolism genes, simultaneously with common variants bundled into a polygenic trait score. Two additional cohorts were used for validation and included 1,746 individuals from the Montréal Heart Institute Biobank and 1,048 individuals from the University of Pennsylvania. Findings were consistent between cohorts: we found rare heterozygous large-effect variants in 18.7% and 10.9% of low- and high-HDL-C patients, respectively. We also found common variant accumulation, indicated by extreme polygenic trait scores, in an additional 12.8% and 19.3% of overall cases of low- and high-HDL-C extremes, respectively. Thus, the genetic basis of extreme HDL-C concentrations encountered clinically is frequently polygenic, with contributions from both rare large-effect and common small-effect variants. Multiple types of genetic variants should be considered as contributing factors in patients with extreme dyslipidemia.

UI MeSH Term Description Entries
D008076 Cholesterol, HDL Cholesterol which is contained in or bound to high-density lipoproteins (HDL), including CHOLESTEROL ESTERS and free cholesterol. High Density Lipoprotein Cholesterol,Cholesterol, HDL2,Cholesterol, HDL3,HDL Cholesterol,HDL(2) Cholesterol,HDL(3) Cholesterol,HDL2 Cholesterol,HDL3 Cholesterol,alpha-Lipoprotein Cholesterol,Cholesterol, alpha-Lipoprotein,alpha Lipoprotein Cholesterol
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D005260 Female Females
D005838 Genotype The genetic constitution of the individual, comprising the ALLELES present at each GENETIC LOCUS. Genogroup,Genogroups,Genotypes
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000328 Adult A person having attained full growth or maturity. Adults are of 19 through 44 years of age. For a person between 19 and 24 years of age, YOUNG ADULT is available. Adults
D000368 Aged A person 65 years of age or older. For a person older than 79 years, AGED, 80 AND OVER is available. Elderly
D014644 Genetic Variation Genotypic differences observed among individuals in a population. Genetic Diversity,Variation, Genetic,Diversity, Genetic,Diversities, Genetic,Genetic Diversities,Genetic Variations,Variations, Genetic
D059014 High-Throughput Nucleotide Sequencing Techniques of nucleotide sequence analysis that increase the range, complexity, sensitivity, and accuracy of results by greatly increasing the scale of operations and thus the number of nucleotides, and the number of copies of each nucleotide sequenced. The sequencing may be done by analysis of the synthesis or ligation products, hybridization to preexisting sequences, etc. High-Throughput Sequencing,Illumina Sequencing,Ion Proton Sequencing,Ion Torrent Sequencing,Next-Generation Sequencing,Deep Sequencing,High-Throughput DNA Sequencing,High-Throughput RNA Sequencing,Massively-Parallel Sequencing,Pyrosequencing,DNA Sequencing, High-Throughput,High Throughput DNA Sequencing,High Throughput Nucleotide Sequencing,High Throughput RNA Sequencing,High Throughput Sequencing,Massively Parallel Sequencing,Next Generation Sequencing,Nucleotide Sequencing, High-Throughput,RNA Sequencing, High-Throughput,Sequencing, Deep,Sequencing, High-Throughput,Sequencing, High-Throughput DNA,Sequencing, High-Throughput Nucleotide,Sequencing, High-Throughput RNA,Sequencing, Illumina,Sequencing, Ion Proton,Sequencing, Ion Torrent,Sequencing, Massively-Parallel,Sequencing, Next-Generation

Related Publications

Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
July 2004, Current opinion in cardiology,
Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
February 1987, American heart journal,
Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
September 1982, Journal of epidemiology and community health,
Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
July 2013, Arteriosclerosis, thrombosis, and vascular biology,
Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
December 2017, Journal of thoracic disease,
Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
April 1983, American journal of epidemiology,
Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
September 2006, Metabolism: clinical and experimental,
Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
January 1979, The Medical journal of Australia,
Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
November 2023, Indian heart journal,
Jacqueline S Dron, and Jian Wang, and Cécile Low-Kam, and Sumeet A Khetarpal, and John F Robinson, and Adam D McIntyre, and Matthew R Ban, and Henian Cao, and David Rhainds, and Marie-Pierre Dubé, and Daniel J Rader, and Guillaume Lettre, and Jean-Claude Tardif, and Robert A Hegele
July 2023, Zhonghua xin xue guan bing za zhi,
Copied contents to your clipboard!