Cargando…

A Novel Cell-Free, Non-Fluorescent Method to Measure LOX-1-Binding Activity Corresponding to The Functional Activity of HDL

Aims: A functional abnormality in high-density lipoprotein (HDL) particles rather than a quantitative abnormality in HDL cholesterol levels has been suggested to promote atherosclerosis. The modification of HDL may underlie functional changes to HDL such as gaining the ability to bind and activate t...

Descripción completa

Detalles Bibliográficos
Autores principales: Kakino, Akemi, Usami, Yoko, Horiuchi, Sayaka, Fujita, Yoshiko, Kotani, Kazuhiko, Chen, Chu-Huang, Okamura, Tomonori, Sawamura, Tatsuya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japan Atherosclerosis Society 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6845692/
https://www.ncbi.nlm.nih.gov/pubmed/30944265
http://dx.doi.org/10.5551/jat.47183
_version_ 1783468722315329536
author Kakino, Akemi
Usami, Yoko
Horiuchi, Sayaka
Fujita, Yoshiko
Kotani, Kazuhiko
Chen, Chu-Huang
Okamura, Tomonori
Sawamura, Tatsuya
author_facet Kakino, Akemi
Usami, Yoko
Horiuchi, Sayaka
Fujita, Yoshiko
Kotani, Kazuhiko
Chen, Chu-Huang
Okamura, Tomonori
Sawamura, Tatsuya
author_sort Kakino, Akemi
collection PubMed
description Aims: A functional abnormality in high-density lipoprotein (HDL) particles rather than a quantitative abnormality in HDL cholesterol levels has been suggested to promote atherosclerosis. The modification of HDL may underlie functional changes to HDL such as gaining the ability to bind and activate the lectin-like oxidized low-density lipoprotein (LDL) receptor-1 (LOX-1). We aimed to develop a novel method for measuring modified HDL on the basis of its binding to LOX-1. Methods: We designed a LOX-1 binding–based enzyme-linked immunosorbent assay (ELISA) with recombinant LOX-1 and anti-apoAI antibody. A lipid-free standard was devised by making a chimeric fusion protein containing anti-LOX-1 antibody and human apoAI fragment. We used this system to detect modified HDL, designated as LOX-1 ligand containing apoAI (LAA). Results: With our ELISA system, we detected HDL modified by copper oxidation, hypochlorous acid, 4-hydroxynonenal, and potassium cyanate, but not native HDL. Upon oxidation, HDL showed increased LOX-1 binding activity and decreased cholesterol efflux and paraoxonase-1 activities. In the ELISA, the chimeric fusion protein standard showed minimal variation in reference binding curves in contrast to copper-oxidized HDL preparations, suggesting better quality control of the chimeric fusion protein as the standard for measuring modified HDL activity. LAA was detectable in the plasma of healthy individuals and of mice fed a high-fat diet. Conclusion: We have developed a novel ELISA by using recombinant LOX-1 and anti-apoAI antibody to measure the activity of modified HDL in plasma.
format Online
Article
Text
id pubmed-6845692
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Japan Atherosclerosis Society
record_format MEDLINE/PubMed
spelling pubmed-68456922019-11-18 A Novel Cell-Free, Non-Fluorescent Method to Measure LOX-1-Binding Activity Corresponding to The Functional Activity of HDL Kakino, Akemi Usami, Yoko Horiuchi, Sayaka Fujita, Yoshiko Kotani, Kazuhiko Chen, Chu-Huang Okamura, Tomonori Sawamura, Tatsuya J Atheroscler Thromb Original Article Aims: A functional abnormality in high-density lipoprotein (HDL) particles rather than a quantitative abnormality in HDL cholesterol levels has been suggested to promote atherosclerosis. The modification of HDL may underlie functional changes to HDL such as gaining the ability to bind and activate the lectin-like oxidized low-density lipoprotein (LDL) receptor-1 (LOX-1). We aimed to develop a novel method for measuring modified HDL on the basis of its binding to LOX-1. Methods: We designed a LOX-1 binding–based enzyme-linked immunosorbent assay (ELISA) with recombinant LOX-1 and anti-apoAI antibody. A lipid-free standard was devised by making a chimeric fusion protein containing anti-LOX-1 antibody and human apoAI fragment. We used this system to detect modified HDL, designated as LOX-1 ligand containing apoAI (LAA). Results: With our ELISA system, we detected HDL modified by copper oxidation, hypochlorous acid, 4-hydroxynonenal, and potassium cyanate, but not native HDL. Upon oxidation, HDL showed increased LOX-1 binding activity and decreased cholesterol efflux and paraoxonase-1 activities. In the ELISA, the chimeric fusion protein standard showed minimal variation in reference binding curves in contrast to copper-oxidized HDL preparations, suggesting better quality control of the chimeric fusion protein as the standard for measuring modified HDL activity. LAA was detectable in the plasma of healthy individuals and of mice fed a high-fat diet. Conclusion: We have developed a novel ELISA by using recombinant LOX-1 and anti-apoAI antibody to measure the activity of modified HDL in plasma. Japan Atherosclerosis Society 2019-11-01 /pmc/articles/PMC6845692/ /pubmed/30944265 http://dx.doi.org/10.5551/jat.47183 Text en 2019 Japan Atherosclerosis Society This article is distributed under the terms of the latest version of CC BY-NC-SA defined by the Creative Commons Attribution License.http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Original Article
Kakino, Akemi
Usami, Yoko
Horiuchi, Sayaka
Fujita, Yoshiko
Kotani, Kazuhiko
Chen, Chu-Huang
Okamura, Tomonori
Sawamura, Tatsuya
A Novel Cell-Free, Non-Fluorescent Method to Measure LOX-1-Binding Activity Corresponding to The Functional Activity of HDL
title A Novel Cell-Free, Non-Fluorescent Method to Measure LOX-1-Binding Activity Corresponding to The Functional Activity of HDL
title_full A Novel Cell-Free, Non-Fluorescent Method to Measure LOX-1-Binding Activity Corresponding to The Functional Activity of HDL
title_fullStr A Novel Cell-Free, Non-Fluorescent Method to Measure LOX-1-Binding Activity Corresponding to The Functional Activity of HDL
title_full_unstemmed A Novel Cell-Free, Non-Fluorescent Method to Measure LOX-1-Binding Activity Corresponding to The Functional Activity of HDL
title_short A Novel Cell-Free, Non-Fluorescent Method to Measure LOX-1-Binding Activity Corresponding to The Functional Activity of HDL
title_sort novel cell-free, non-fluorescent method to measure lox-1-binding activity corresponding to the functional activity of hdl
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6845692/
https://www.ncbi.nlm.nih.gov/pubmed/30944265
http://dx.doi.org/10.5551/jat.47183
work_keys_str_mv AT kakinoakemi anovelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT usamiyoko anovelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT horiuchisayaka anovelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT fujitayoshiko anovelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT kotanikazuhiko anovelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT chenchuhuang anovelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT okamuratomonori anovelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT sawamuratatsuya anovelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT kakinoakemi novelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT usamiyoko novelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT horiuchisayaka novelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT fujitayoshiko novelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT kotanikazuhiko novelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT chenchuhuang novelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT okamuratomonori novelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl
AT sawamuratatsuya novelcellfreenonfluorescentmethodtomeasurelox1bindingactivitycorrespondingtothefunctionalactivityofhdl