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Isolation and Analysis of Plasma Lipoproteins by Ultracentrifugation
Published on: January 28, 2021
Mapping Atheroprotective Functions and Related Proteins/Lipoproteins in Size Fractionated Human Plasma
Debi K Swertfeger1, Hailong Li1, Sandra Rebholz1,2
1§Division of Biomedical Informatics, Cincinnati Children's Hospital Research Foundation, 3333 Burnet Avenue, Cincinnati, Ohio 45229-3039.
Insights
High-density lipoprotein (HDL) functions like cholesterol removal and antioxidant protection are linked to specific HDL subspecies. These subspecies involve diverse proteins and lipids, offering new insights into cardiovascular health.
Area of Science:
- Cardiovascular Science
- Lipid Metabolism
- Proteomics
Background:
- High-density lipoprotein (HDL) exhibits cardio-protective functions, including cholesterol removal and lipoprotein oxidation inhibition.
- The existence of distinct HDL subparticles with varied compositions is proposed to mediate these functions.
- Understanding the specific roles of HDL subspecies is crucial for cardiovascular health research.
Purpose of the Study:
- To investigate the association between HDL subspecies and their functional activities.
- To identify specific proteins and lipid compositions correlating with HDL's cholesterol efflux and antioxidant properties.
- To elucidate how lipoprotein composition mediates key HDL functions.
Main Methods:
- Plasma fractionation using gel filtration chromatography from 10 healthy male donors.
- Mass spectrometry (MS) analysis of protein composition in phospholipid-containing fractions.
- Assays to evaluate cholesterol efflux capacity and low-density lipoprotein (LDL) protection from oxidation for each fraction.
Main Results:
- Multiple peaks of cholesterol efflux and antioxidant activity were identified across the plasma size gradient.
- Neither function strongly correlated with a single protein, but diverse proteins showed strong correlations with activity peaks.
- Phospholipid and cholesterol concentrations correlated with cholesterol efflux, while total protein correlated with antioxidant activity. Specific subspecies showed strong correlations with both functions.
Conclusions:
- HDL functions are associated with specific lipoprotein subspecies, not solely individual proteins.
- A diverse array of proteins, beyond lipid metabolism, are involved in HDL's protective roles.
- This study provides a foundation for understanding how lipoprotein composition dictates HDL functionality in cardiovascular health.
Abstract:
HDL has been shown to possess a variety of cardio-protective functions, including removal of excess cholesterol from the periphery, and inhibition of lipoprotein oxidation. It has been proposed that various HDL subparticles exist, each with distinct protein and lipid compositions, which may be responsible for HDL's many functions. We hypothesized that HDL functions will co-migrate with the operational lipoprotein subspecies when separated by gel filtration chromatography. Plasma from 10 healthy male donors was fractionated and the protein composition of the phospholipid containing fractions was analyzed by mass spectrometry (MS). Each fraction was evaluated for its proteomic content as well as its ability to promote cholesterol efflux and protect low density lipoprotein (LDL) from free radical oxidation. For each function, several peaks of activity were identified across the plasma size gradient. Neither cholesterol efflux or LDL antioxidation activity correlated strongly with any single protein across the fractions. However, we identified multiple proteins that had strong correlations (r values >0.7, p < 0.01) with individual peaks of activity. These proteins fell into diverse functional categories, including those traditionally associated with lipid metabolism, as well as alternative complement cascade, innate immunity and clotting cascades and immunoglobulins. Additionally, the phospholipid and cholesterol concentration of the fractions correlated strongly with cholesterol efflux (r = 0.95 and 0.82 respectively), whereas the total protein content of the fractions correlated best with antioxidant activity across all fractions (r = 0.746). Furthermore, two previously postulated subspecies (apoA-I, apoA-II and apoC-1; as well as apoA-I, apoC-I and apoJ) were found to have strong correlations with both cholesterol efflux and antioxidation activity. Up till now, very little has been known about how lipoprotein composition mediates functions like cholesterol efflux and antioxidation.
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