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Mechanism of Regulation of Adipocyte Numbers in Adult Organisms Through Differentiation and Apoptosis Homeostasis
Published on: June 3, 2016
Human HDL containing a novel apoC-I isoform induces smooth muscle cell apoptosis
Catherine J McNeal1, Subroto Chatterjee, Jennifer Hou
1Department of Internal Medicine and Department of Pediatrics, Scott & White Healthcare, Temple, TX 76508, USA. cmcneal@swmail.sw.org
Insights
Certain high-density lipoprotein (HDL) subclasses induce smooth muscle cell apoptosis, particularly in adults with coronary heart disease (CHD). These apoptotic HDL particles are linked to specific apolipoprotein C-I (apoC-I) isoforms and higher HDL cholesterol levels.
Area of Science:
- Cardiovascular Biology
- Lipid Metabolism
- Cellular Apoptosis
Background:
- Coronary heart disease (CHD) risk factors are not fully understood.
- High-density lipoprotein (HDL) plays a complex role in cardiovascular health.
- Specific HDL subclasses may have pro-apoptotic effects on vascular cells.
Purpose of the Study:
- To identify properties differentiating apoptotic and non-apoptotic HDL subclasses.
- To investigate HDL's role in smooth muscle cell apoptosis in adults with and without CHD.
Main Methods:
- Density gradient ultracentrifugation to isolate HDL subclasses (HDL2, HDL3).
- Incubation of HDL subclasses with human aortic smooth muscle cells (ASMCs).
- Quantification of ASMC apoptosis relative to C2-ceramide and TNF-α.
Main Results:
- Apoptotic HDL was predominantly associated with the HDL2 subclass.
- This phenotype was linked to higher serum apoC-I levels and a novel apoC-I isoform.
- Apoptotic HDL was more common in adults with CHD, often with high HDL-C levels.
Conclusions:
- Specific HDL subclasses, enriched in a novel apoC-I isoform, induce significant ASMC apoptosis in vitro.
- This apoptotic HDL phenotype, associated with higher apoC-I and HDL-C, may contribute to CHD risk.
- The findings suggest a novel mechanism for CHD risk not explained by traditional risk factors.
Aims:
We discovered that some adults with coronary heart disease (CHD) have a high density lipoprotein (HDL) subclass which induces human aortic smooth muscle cell (ASMC) apoptosis in vitro. The purpose of this investigation was to determine what properties differentiate apoptotic and non-apoptotic HDL subclasses in adults with and without CHD.
Methods And Results:
Density gradient ultracentrifugation was used to measure the particle density distribution and to isolate two HDL subclass fractions, HDL2 and HDL3, from 21 individuals, including 12 without CHD. The HDL fractions were incubated with ASMCs for 24 h; apoptosis was quantitated relative to C2-ceramide and tumour necrosis factor-alpha (TNF-α). The observed effect of some HDL subclasses on apoptosis was ∼6-fold greater than TNF-α and ∼16-fold greater than the cell medium. We observed that apoptotic HDL was (i) predominately associated with the HDL2 subclass; (ii) almost exclusively found in individuals with a higher apoC-I serum level and a novel, higher molecular weight isoform of apoC-I; and (iii) more common in adults with CHD, the majority of whom had high (>60 mg/dL) HDL-C levels.
Conclusions:
Some HDL subclasses enriched in a novel isoform of apoC-I induce extensive ASMC apoptosis in vitro. Individuals with this apoptotic HDL phenotype generally have higher apoC-I and HDL-C levels consistent with an inhibitory effect of apoC-I on cholesteryl ester transfer protein activity. The association of this phenotype with processes that can promote plaque rupture may explain a source of CHD risk not accounted for by the classical risk factors.
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