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A pro-atherogenic HDL profile in coronary heart disease patients: an iTRAQ labelling-based proteomic approach
Li-rong Yan1, Dong-xue Wang2, Hong Liu1
1Key Laboratory of Clinical Trial Research in Cardiovascular Drugs, Ministry of Health, State Key Laboratory of Cardiovascular Diseases, FuWai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
Insights
High-density lipoprotein (HDL) in coronary heart disease (CHD) patients shifts to a pro-atherogenic protein profile, potentially reducing its protective effects. This proteomic analysis offers deeper insights than standard HDL-C levels.
Area of Science:
- Proteomics
- Cardiovascular Research
- Biochemistry
Background:
- High-density lipoprotein (HDL) function is increasingly understood to depend on its protein composition, not just cholesterol levels.
- In coronary heart disease (CHD) patients, HDL may exhibit pro-atherogenic properties, but the specific compositional changes driving this are unclear.
Purpose of the Study:
- To compare the proteomic profile of HDL particles between individuals with and without coronary heart disease (CHD).
- To identify specific HDL proteins that are differentially expressed in CHD patients and correlate with disease state.
Main Methods:
- Proteomic analysis using iTRAQ and nanoLC-MS/MS to profile HDL proteins in pooled samples from male CHD patients and controls.
- Gene Ontology (GO) analysis to categorize the functions of differentially expressed proteins.
- Enzyme-linked immunosorbent assay (ELISA) to validate the differential expression of selected proteins (serum amyloid A and apoC-I).
Main Results:
- Twelve out of 196 identified HDL proteins were differentially expressed between CHD patients and controls.
- Up-regulated proteins were associated with inflammation (pro-atherogenic), while down-regulated proteins were linked to lipid metabolism (anti-atherogenic).
- Validation confirmed significantly increased serum amyloid A and decreased apoC-I in HDL from CHD patients.
Conclusions:
- HDL protein composition in CHD patients shifts towards a pro-atherogenic profile, potentially impairing its cardioprotective functions.
- Proteomic analysis of HDL provides more functionally relevant information than traditional HDL-C measurements for understanding CHD.
Objectives:
This study aims to compare the protein composition of high-density lipoprotein (HDL) particles in coronary heart disease (CHD) patients and controls by proteomic methods.
Background:
HDL has been reported to exert pro-atherogenic properties in CHD patients. Accumulating evidence indicates that HDL composition, rather than the HDL-C level, determines its functions. The changes in HDL composition involved in the conversion of anti-atherogenic to pro-atherogenic properties in CHD patients are currently unknown.
Methods And Results:
iTRAQ combined with nanoLC-MS/MS was performed to obtain a differential expression profile of the HDL pooled samples of the male age-matched CHD patients and controls (n = 10/group). Of the 196 proteins identified in the examined HDL, 12 were differentially expressed between the CHD patients and the controls, including five up-regulated proteins and seven down-regulated proteins. Using GO analysis, we determined that the up-regulated proteins were mostly involved in inflammatory reactions, displaying a potential pro-atherogenic profile. In contrast, the down-regulated proteins were mostly involved in lipid metabolism processes, displaying anti-atherogenic properties. To confirm the proteomic results, serum amyloid A (SAA) and apoC-I were selected and quantified by ELISA, in the same population as the proteomic analysis, as well as another independent population (n = 120/group). Consistent with the proteomic results, the amount of SAA was significantly increased, and apoC-I was significantly decreased in the HDL particles of CHD patients compared with those of controls (P<0.05).
Conclusions:
Our study shows that the HDL proteome changes to a pro-atherogenic profile in CHD patients, which might compromise the protective effects of HDL. Proteomic analysis of HDL composition may provide more relevant information regarding their functional properties than steady-state HDL-C levels.
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