The Heat Shock Protein 27 Immune Complex Enhances Exosomal Cholesterol Efflux
Previously, we demonstrated that Heat Shock Protein 27 (HSP27) reduces the inflammatory stages of experimental atherogenesis, is released by macrophage (MΦ) exosomes and lowers cholesterol levels in atherosclerotic plaques. Recently, we discovered that natural autoantibodies directed against HSP27 e...
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doaj-d6657d36caec47079945a0cad60ff48f2020-11-25T03:23:35ZengMDPI AGBiomedicines2227-90592020-08-01829029010.3390/biomedicines8080290The Heat Shock Protein 27 Immune Complex Enhances Exosomal Cholesterol EffluxChunhua Shi0Daiana Alvarez-Olmedo1Yuan Zhang2Badal S. B. Pattar3Edward R. O’Brien4Health Research and Innovation Center, Libin Cardiovascular Institute, University of Calgary, Cumming School of Medicine, Calgary, AB T2N4Z6, CanadaHealth Research and Innovation Center, Libin Cardiovascular Institute, University of Calgary, Cumming School of Medicine, Calgary, AB T2N4Z6, CanadaHealth Research and Innovation Center, Libin Cardiovascular Institute, University of Calgary, Cumming School of Medicine, Calgary, AB T2N4Z6, CanadaHealth Research and Innovation Center, Libin Cardiovascular Institute, University of Calgary, Cumming School of Medicine, Calgary, AB T2N4Z6, CanadaHealth Research and Innovation Center, Libin Cardiovascular Institute, University of Calgary, Cumming School of Medicine, Calgary, AB T2N4Z6, CanadaPreviously, we demonstrated that Heat Shock Protein 27 (HSP27) reduces the inflammatory stages of experimental atherogenesis, is released by macrophage (MΦ) exosomes and lowers cholesterol levels in atherosclerotic plaques. Recently, we discovered that natural autoantibodies directed against HSP27 enhance its signaling effects, as HSP27 immune complexes (IC) interact at the cell membrane to modulate signaling. We now seek to evaluate the potential role of the HSP27 IC on MΦ exosomal release and cholesterol export. First, in human blood samples, we show that healthy control subjects have 86% more exosomes compared to patients with coronary artery disease (<i>p</i> < 0.0001). Treating human THP-1 MΦ with rHSP27 plus a validated anti-HPS27 IgG antibody increased the abundance of exosomes in the culture media (+98%; <i>p</i> < 0.0001) as well as expression of Flotillin-2, a marker reflective of exosomal release. Exosome cholesterol efflux was independent of Apo-A1. THP-1 MΦ loaded with NBD-labeled cholesterol and treated with the HSP27 IC showed a 22% increase in extracellular vesicles labeled with NBD and a 95% increase in mean fluorescent intensity. In conclusion, exosomal abundance and secretion of cholesterol content increases in response to HSP27 IC treatment, which may represent an important therapeutic option for diseases characterized by cholesterol accumulation.https://www.mdpi.com/2227-9059/8/8/290exosomeHeat Shock Protein 27antibodyimmune complex |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Chunhua Shi Daiana Alvarez-Olmedo Yuan Zhang Badal S. B. Pattar Edward R. O’Brien |
spellingShingle |
Chunhua Shi Daiana Alvarez-Olmedo Yuan Zhang Badal S. B. Pattar Edward R. O’Brien The Heat Shock Protein 27 Immune Complex Enhances Exosomal Cholesterol Efflux Biomedicines exosome Heat Shock Protein 27 antibody immune complex |
author_facet |
Chunhua Shi Daiana Alvarez-Olmedo Yuan Zhang Badal S. B. Pattar Edward R. O’Brien |
author_sort |
Chunhua Shi |
title |
The Heat Shock Protein 27 Immune Complex Enhances Exosomal Cholesterol Efflux |
title_short |
The Heat Shock Protein 27 Immune Complex Enhances Exosomal Cholesterol Efflux |
title_full |
The Heat Shock Protein 27 Immune Complex Enhances Exosomal Cholesterol Efflux |
title_fullStr |
The Heat Shock Protein 27 Immune Complex Enhances Exosomal Cholesterol Efflux |
title_full_unstemmed |
The Heat Shock Protein 27 Immune Complex Enhances Exosomal Cholesterol Efflux |
title_sort |
heat shock protein 27 immune complex enhances exosomal cholesterol efflux |
publisher |
MDPI AG |
series |
Biomedicines |
issn |
2227-9059 |
publishDate |
2020-08-01 |
description |
Previously, we demonstrated that Heat Shock Protein 27 (HSP27) reduces the inflammatory stages of experimental atherogenesis, is released by macrophage (MΦ) exosomes and lowers cholesterol levels in atherosclerotic plaques. Recently, we discovered that natural autoantibodies directed against HSP27 enhance its signaling effects, as HSP27 immune complexes (IC) interact at the cell membrane to modulate signaling. We now seek to evaluate the potential role of the HSP27 IC on MΦ exosomal release and cholesterol export. First, in human blood samples, we show that healthy control subjects have 86% more exosomes compared to patients with coronary artery disease (<i>p</i> < 0.0001). Treating human THP-1 MΦ with rHSP27 plus a validated anti-HPS27 IgG antibody increased the abundance of exosomes in the culture media (+98%; <i>p</i> < 0.0001) as well as expression of Flotillin-2, a marker reflective of exosomal release. Exosome cholesterol efflux was independent of Apo-A1. THP-1 MΦ loaded with NBD-labeled cholesterol and treated with the HSP27 IC showed a 22% increase in extracellular vesicles labeled with NBD and a 95% increase in mean fluorescent intensity. In conclusion, exosomal abundance and secretion of cholesterol content increases in response to HSP27 IC treatment, which may represent an important therapeutic option for diseases characterized by cholesterol accumulation. |
topic |
exosome Heat Shock Protein 27 antibody immune complex |
url |
https://www.mdpi.com/2227-9059/8/8/290 |
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