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Published on: August 31, 2014
Genetic architecture of cardiometabolic risks in people living with HIV
Haoxiang Cheng1, Anshuman Sewda1,2, Carla Marquez-Luna3
1Department of Genetics and Genomic Sciences, Icahn School of Medicine at Mount Sinai, 1425 Madison Avenue, New York, NY, 10029, United States of America.
Insights
Genetic factors influence cardiovascular disease risk in people with HIV (PLWH). Immune regulation and behavioral genes contribute to dyslipidemia, and polygenic risk scores can identify high-risk individuals for targeted interventions.
Area of Science:
- Genetics
- Cardiovascular Disease
- Infectious Diseases (HIV/AIDS)
Background:
- Antiretroviral therapies improve survival for people living with HIV (PLWH), but they face elevated cardiovascular disease (CVD) risk.
- Genetic predictors for this increased CVD risk in PLWH remain largely unknown, despite known genetic links to cardiometabolic risk in the general population.
Purpose of the Study:
- To identify genetic variants associated with lipid levels and cardiometabolic risk specifically in people living with HIV.
- To assess the predictive value of polygenic risk scores (PRS) for type 2 diabetes (T2D) and myocardial infarction (MI) in diverse PLWH populations.
Main Methods:
- Screened 6284 PLWH (European Americans and African Americans) for common and HIV-specific genetic variants linked to lipid levels.
- Tested identified HIV-specific variants for associations with other traits and assessed PRS for T2D and MI in relation to cardiometabolic outcomes.
Main Results:
- Confirmed known lipid-related genetic loci in PLWH and identified novel HIV-specific variants in immune regulation and behavioral genes.
- European-based PRS for T2D significantly increased T2D risk prediction in European American PLWH, with less impact in African Americans.
- Multiethnic PRS improved risk stratification for T2D and MI in PLWH, though MI PRS alone was not predictive in African Americans.
Conclusions:
- Genetic loci in immune regulation and behavioral predispositions contribute to dyslipidemia in PLWH.
- European-based and multiethnic PRS are valuable tools for stratifying PLWH at high risk for cardiometabolic diseases, enabling preventive strategies.
Background:
Advances in antiretroviral therapies have greatly improved the survival of people living with human immunodeficiency virus (HIV) infection (PLWH); yet, PLWH have a higher risk of cardiovascular disease than those without HIV. While numerous genetic loci have been linked to cardiometabolic risk in the general population, genetic predictors of the excessive risk in PLWH are largely unknown.
Methods:
We screened for common and HIV-specific genetic variants associated with variation in lipid levels in 6284 PLWH (3095 European Americans [EA] and 3189 African Americans [AA]), from the Centers for AIDS Research Network of Integrated Clinical Systems cohort. Genetic hits found exclusively in the PLWH cohort were tested for association with other traits. We then assessed the predictive value of a series of polygenic risk scores (PRS) recapitulating the genetic burden for lipid levels, type 2 diabetes (T2D), and myocardial infarction (MI) in EA and AA PLWH.
Results:
We confirmed the impact of previously reported lipid-related susceptibility loci in PLWH. Furthermore, we identified PLWH-specific variants in genes involved in immune cell regulation and previously linked to HIV control, body composition, smoking, and alcohol consumption. Moreover, PLWH at the top of European-based PRS for T2D distribution demonstrated a > 2-fold increased risk of T2D compared to the remaining 95% in EA PLWH but to a much lesser degree in AA. Importantly, while PRS for MI was not predictive of MI risk in AA PLWH, multiethnic PRS significantly improved risk stratification for T2D and MI.
Conclusions:
Our findings suggest that genetic loci involved in the regulation of the immune system and predisposition to risky behaviors contribute to dyslipidemia in the presence of HIV infection. Moreover, we demonstrate the utility of the European-based and multiethnic PRS for stratification of PLWH at a high risk of cardiometabolic diseases who may benefit from preventive therapies.
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