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Published on: November 28, 2016
Effects of Genetic Variants Associated with Familial Hypercholesterolemia on Low-Density Lipoprotein-Cholesterol
Yan V Sun1,2, Scott M Damrauer3, Qin Hui1
1Department of Epidemiology, Emory University Rollins School of Public Health.
Insights
Familial hypercholesterolemia (FH) genetic variants significantly elevate LDL-C and increase coronary heart disease (CHD) risk. These effects are consistent across ethnic groups, aiding in identifying at-risk individuals.
Area of Science:
- Genetics
- Cardiovascular Medicine
- Population Health
Background:
- Familial hypercholesterolemia (FH) is an inherited condition causing high LDL-C and premature coronary heart disease (CHD).
- Numerous low-frequency variants in genes like LDLR, APOB, and PCSK9 are linked to FH, but population-level data is scarce.
- This study investigates the population-level effects of FH variants on LDL-C and clinical outcomes.
Purpose of the Study:
- To estimate the phenotypic effects of a subset of FH variants on LDL-C.
- To assess the association of FH variants with clinical outcomes, including CHD.
- To examine these effects across a multi-ethnic population.
Main Methods:
- Examined 16 putatively pathogenic FH variants on the MVP biobank array.
- Assessed associations with maximum LDL-C over 15 years (maxLDL) in 331,107 participants.
- Leveraged 61.7 million clinical encounters to evaluate collective effects on clinical outcomes.
Main Results:
- Eight FH variants significantly elevated maxLDL by 9.4-80.2 mg/dL.
- Phenotypic effects were similar in European and African Americans.
- Identified 748 carriers with elevated maxLDL and higher prevalence of hypercholesterolemia and CHD diagnoses.
Conclusions:
- FH variants exhibit heterogeneous distribution and phenotypic effects.
- FH variants collectively increase CHD risk (OR 1.59) but not peripheral artery disease.
- Further research is needed to strengthen genotype-phenotype associations in multi-ethnic populations for accurate genetic screening.
Background:
Familial hypercholesterolemia (FH) is characterized by inherited high levels of low-density lipoprotein cholesterol (LDL-C) and premature coronary heart disease (CHD). Over a thousand low-frequency variants in LDLR, APOB and PCSK9 have been implicated in FH but few have been examined at the population level. We aim to estimate the phenotypic effects of a subset of FH variants on LDL-C and clinical outcomes among 331,107 multi-ethnic participants.
Methods:
We examined the individual and collective association between putatively pathogenic FH variants included on the MVP biobank array and the maximum LDL-C level over an interval of 15 years (maxLDL). We assessed the collective effect on clinical outcomes by leveraging data from 61.7 million clinical encounters.
Results:
We found 8 out of 16 putatively pathogenic FH variants with ≥30 observed carriers to be significantly associated with elevated maxLDL (9.4-80.2 mg/dL). Phenotypic effects were similar for European and African Americans despite substantial differences in carrier frequencies. Based on observed effects on maxLDL, we identified a total of 748 carriers (1:443) who had elevated maxLDL (36.5±1.4 mg/dL, p=1.2×10-152), and higher prevalence of clinical diagnoses related to hypercholesterolemia and CHD in a phenome-wide scan. Adjusted for maxLDL, FH variants collectively associated with higher prevalence of CHD (odds ratio, 1.59 [95% CI 1.36-1.86], p=1.1×10-8) but not peripheral artery disease.
Conclusions:
The distribution and phenotypic effects of putatively pathogenic FH variants were heterogeneous within and across variants. More robust evidence of genotype-phenotype associations of FH variants in multi-ethnic populations is needed to accurately infer at-risk individuals from genetic screening.
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