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Published on: October 12, 2017
Combined statin and niacin therapy remodels the high-density lipoprotein proteome
Pattie S Green1, Tomas Vaisar, Subramaniam Pennathur
1Department of Medicine, University of Washington, Seattle, WA, USA. psgreen@u.washington.edu
Insights
Combined statin and niacin therapy improved high-density lipoprotein (HDL) protein composition in coronary artery disease patients. This therapy partially reversed HDL protein changes, making it more like that of healthy individuals.
Area of Science:
- Cardiovascular Disease Research
- Lipid Metabolism
- Proteomics
Background:
- Low high-density lipoprotein (HDL) levels are a target for cardiovascular disease prevention.
- HDL(3) in coronary artery disease (CAD) patients shows enrichment in apolipoprotein E and altered protein cargo.
- Altered HDL protein composition may impact its antiatherogenic and anti-inflammatory functions.
Purpose of the Study:
- To investigate if combined statin and niacin therapy, which increases HDL levels, can reverse the altered HDL protein composition in CAD subjects.
- To determine if this combination therapy normalizes the HDL proteome towards that seen in healthy individuals.
Main Methods:
- Analysis of HDL(3) protein composition using liquid chromatography-Fourier transform-mass spectrometry in CAD subjects before and after 1 year of combination therapy.
- Quantification of protein alterations via spectral counting and extracted ion chromatograms.
- Biochemical validation of apolipoprotein E level changes in a separate cohort of CAD patients.
Main Results:
- Combination therapy significantly decreased apolipoprotein E abundance in HDL(3).
- The therapy increased the abundance of macrophage proteins involved in reverse cholesterol transport.
- The HDL(3) proteome in treated CAD subjects more closely resembled that of healthy controls.
Conclusions:
- Combined statin and niacin therapy partially reverses the aberrant HDL(3) protein composition in coronary artery disease.
- Measuring the HDL proteome may offer insights into the effectiveness of therapies aimed at preventing atherosclerosis.
Background:
Boosting low high-density lipoprotein (HDL) levels is a current strategy for preventing clinical events that result from cardiovascular disease. We previously showed that HDL(3) of subjects with coronary artery disease is enriched in apolipoprotein E and that the lipoprotein carries a distinct protein cargo. This observation suggests that altered protein composition might affect the antiatherogenic and antiinflammatory properties of HDL. We hypothesized that an intervention that increases HDL levels-combined statin and niacin therapy-might reverse these changes.
Methods And Results:
HDL(3) isolated from 6 coronary artery disease subjects before and 1 year after combination therapy was analyzed by liquid chromatography-Fourier transform-mass spectrometry. Alterations in protein composition were detected by spectral counting and confirmed with extracted ion chromatograms. We found that combination therapy decreased the abundance of apolipoprotein E in HDL(3) while increasing the abundance of other macrophage proteins implicated in reverse cholesterol transport. Treatment-induced decreases in apolipoprotein E levels of HDL(3) were validated biochemically in a second group of 18 coronary artery disease subjects. Interestingly, the changes in HDL(3) proteome with niacin/statin treatment resulted in a protein composition that more closely resembled that of HDL(3) in healthy control subjects.
Conclusions:
Combined statin and niacin therapy partially reverses the changes in the protein composition seen in HDL(3) in coronary artery disease subjects. Our observations raise the possibility that quantifying the HDL proteome could provide insights into the therapeutic efficacy of antiatherosclerotic interventions.
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