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Published on: November 17, 2018
Monogenic ALB Variants as Determinants of Severe Hypercholesterolemia: A Population-Based Cohort Study
Alexander S F Berry1, Dylan Cawley2, Andrea Hattenberger3
1Department of Developmental Medicine, Geisinger, Lewisburg, Pennsylvania, USA.
Insights
Loss-of-function variants in the ALB gene are a new cause of high LDL-C, similar to familial hypercholesterolemia. These genetic changes in albumin significantly increase low-density lipoprotein cholesterol levels.
Area of Science:
- Genetics
- Cardiovascular Disease
- Biochemistry
Background:
- Hypoalbuminemia is linked to myocardial infarction risk factors like hypercholesterolemia and diabetes.
- Loss-of-function (LoF) variants in the ALB gene cause hypoalbuminemia.
- Heterozygous ALB LoF variants increase low-density lipoprotein cholesterol (LDL-C), resembling familial hypercholesterolemia.
Purpose of the Study:
- To investigate the impact of ALB LoF variants and other causes of low albumin on LDL-C levels.
- Utilized data from two large population biobanks for comprehensive analysis.
Main Methods:
- Employed data from Geisinger's MyCode and NIH's All of Us Research Program cohorts.
- Adjusted LDL-C for lipid-lowering medication and extracted myocardial infarction diagnoses.
- Calculated a polygenic score for serum albumin and used meta-analysis for results.
Main Results:
- Among over 550,000 participants, 77 carried an ALB LoF variant.
- ALB LoF variants reduced serum albumin by 0.69 g/dL and increased LDL-C by 38.3 mg/dL.
- Paradoxically, polygenic determinants of lower albumin decreased LDL-C by 0.22 mg/dL per decile.
Conclusions:
- ALB LoF variants are an underrecognized monogenic cause of elevated LDL-C.
- The effect size of ALB LoF variants on LDL-C is comparable to familial hypercholesterolemia.
- Distinct mechanisms underlie the divergent effects of ALB-mediated versus polygenic albumin reduction on LDL-C.
Background:
Hypoalbuminemia is associated with several risk factors for myocardial infarction, including hypercholesterolemia, liver disease, kidney disease, and diabetes. Homozygosity of loss-of-function (LoF) variants in the ALB gene, which encodes albumin, is a known cause of congenital hypoalbuminemia. Studies have also shown that heterozygous ALB LoF variants are associated with increases in low-density lipoprotein cholesterol (LDL-C), comparable to those seen in familial hypercholesterolemia.
Objectives:
This study examined the effect of ALB LoF variants and other causes of low albumin on LDL-C levels in 2 population biobanks.
Methods:
This study used data from 2 large cohorts with linked electronic health record and genetic information: Geisinger's MyCode Community Health Initiative, a health care population based in Pennsylvania, USA; and the National Institutes of Health All of Us Research Program, a nationwide epidemiologic cohort. LDL-C values were adjusted for lipid-lowering medication use. Myocardial infarction diagnoses were extracted from electronic health records using International Classification of Diseases codes. A polygenic score for serum albumin was calculated for participants of European ancestry. Linear regression models were used to estimate associations, and results were meta-analyzed across cohorts using fixed-effects models.
Results:
Among 155,530 MyCode and 405,701 All of Us adult participants, 77 individuals (1 of 7,289) carried an ALB LoF variant. Among noncarriers, a 1 g/dL decrease in serum albumin was associated with a 10.9 mg/dL (95% CI:, 10.4-11.4) decrease in LDL-C. In contrast, ALB LoF variants were associated with a 0.69 g/dL (95% CI: 0.60-0.78) reduction in serum albumin and a 38.3 mg/dL (95% CI: 28.2-48.5) increase in LDL-C. Paradoxically, whereas monogenic determinants of hypoalbuminemia were associated with increased LDL-C, polygenic determinants of lower albumin were associated with a 0.22 mg/dL (95% CI: 0.17-0.26) decrease in LDL-C per decile.
Conclusions:
ALB LoF variants represent a previously underrecognized monogenic cause of elevated LDL-C, with effect sizes slightly less than canonical familial hypercholesterolemia variants. The divergent effects of ALB-mediated vs polygenic or physiological reductions in albumin on LDL-C suggest distinct underlying mechanisms.
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