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CETP promotes exchange of the inflammatory apolipoprotein serum amyloid A between lipoproteins (Arterioscler Thromb Vasc Biol 2018)

Original title: Serum Amyloid A Is an Exchangeable Apolipoprotein

Arterioscler Thromb Vasc Biol · · 5

Wilson PG, Thompson JC, Shridas P, McNamara PJ, de Beer MC, de Beer FC, Webb NR, Tannock LR

Researchers investigated whether serum amyloid A (SAA), a proinflammatory, proatherogenic acute-phase protein usually thought to reside on high-density lipoprotein, can move between lipoprotein particles. Using delipidated human SAA incubated with SAA-free lipoproteins and analysed by chromatography, ELISA, and immunoblot, both in vitro and in vivo experiments showed SAA associates with any lipoprotein rather than staying lipid-free, and can exchange between particles. In the presence of cholesteryl ester transfer protein (CETP), this exchange of SAA between lipoproteins was greater. Lipoproteins carrying SAA also showed increased proteoglycan binding, a mechanism implicated in atherosclerosis, suggesting CETP-facilitated SAA exchange onto apoB-containing lipoproteins may contribute to cardiovascular disease in obesity, diabetes, and metabolic syndrome.

Read the paper (DOI)PubMed

Original abstract

Objective- SAA (serum amyloid A) is a family of acute-phase reactants that have proinflammatory and proatherogenic activities. SAA is more lipophilic than apoA-I (apolipoprotein A-I), and during an acute-phase response, <10% of plasma SAA is found lipid-free. In most reports, SAA is found exclusively associated with high-density lipoprotein; however, we and others have reported SAA on apoB (apolipoprotein B)-containing lipoproteins in both mice and humans. The goal of this study was to determine whether SAA is an exchangeable apolipoprotein. Approach and Results- Delipidated human SAA was incubated with SAA-free human lipoproteins; then, samples were reisolated by fast protein liquid chromatography, and SAA analyzed by ELISA and immunoblot. Both in vitro and in vivo, we show that SAA associates with any lipoprotein and does not remain in a lipid-free form. Although SAA is preferentially found on high-density lipoprotein, it can exchange between lipoproteins. In the presence of CETP (cholesterol ester transfer protein), there is greater exchange of SAA between lipoproteins. Subjects with diabetes mellitus, but not those with metabolic syndrome, showed altered SAA lipoprotein distribution postprandially. Proteoglycan-mediated lipoprotein retention is thought to be an underlying mechanism for atherosclerosis development. SAA has a proteoglycan-binding domain. Lipoproteins containing SAA had increased proteoglycan binding compared with SAA-free lipoproteins. Conclusions- Thus, SAA is an exchangeable apolipoprotein and increases apoB-containing lipoproteins' proteoglycan binding. We and others have previously reported the presence of SAA on low-density lipoprotein in individuals with obesity, diabetes mellitus, and metabolic syndrome. We propose that the presence of SAA on apoB-containing lipoproteins may contribute to cardiovascular disease development in these populations.

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Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.