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Transfer and Enzyme-Mediated Metabolism of Oxidized Phosphatidylcholine and Lysophosphatidylcholine between Low- and High-Density Lipoproteins

Oxidized low-density lipoprotein (oxLDL) and oxidized high-density lipoprotein (oxHDL), known as risk factors for cardiovascular disease, have been observed in plasma and atheromatous plaques. In a previous study, the content of oxidized phosphatidylcholine (oxPC) and lysophosphatidylcholine (lysoPC...

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Autores principales: Sawada, Naoko, Obama, Takashi, Mizuno, Mirei, Fukuhara, Kiyoshi, Iwamoto, Sanju, Aiuchi, Toshihiro, Makiyama, Tomohiko, Itabe, Hiroyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7712993/
https://www.ncbi.nlm.nih.gov/pubmed/33114515
http://dx.doi.org/10.3390/antiox9111045
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author Sawada, Naoko
Obama, Takashi
Mizuno, Mirei
Fukuhara, Kiyoshi
Iwamoto, Sanju
Aiuchi, Toshihiro
Makiyama, Tomohiko
Itabe, Hiroyuki
author_facet Sawada, Naoko
Obama, Takashi
Mizuno, Mirei
Fukuhara, Kiyoshi
Iwamoto, Sanju
Aiuchi, Toshihiro
Makiyama, Tomohiko
Itabe, Hiroyuki
author_sort Sawada, Naoko
collection PubMed
description Oxidized low-density lipoprotein (oxLDL) and oxidized high-density lipoprotein (oxHDL), known as risk factors for cardiovascular disease, have been observed in plasma and atheromatous plaques. In a previous study, the content of oxidized phosphatidylcholine (oxPC) and lysophosphatidylcholine (lysoPC) species stayed constant in isolated in vivo oxLDL but increased in copper-induced oxLDL in vitro. In this study, we prepared synthetic deuterium-labeled 1-palmitoyl lysoPC and palmitoyl-glutaroyl PC (PGPC), a short chain-oxPC to elucidate the metabolic fate of oxPC and lysoPC in oxLDL in the presence of HDL. When LDL preloaded with d(13)-lysoPC was mixed with HDL, d(13)-lysoPC was recovered in both the LDL and HDL fractions equally. d(13)-LysoPC decreased by 50% after 4 h of incubation, while d(13)-PC increased in both fractions. Diacyl-PC production was abolished by an inhibitor of lecithin-cholesterol acyltransferase (LCAT). When d(13)-PGPC-preloaded LDL was incubated with HDL, d(13)-PGPC was transferred to HDL in a dose-dependent manner when both LCAT and lipoprotein-associated phospholipase A(2) (Lp-PLA(2)) were inhibited. Lp-PLA(2) in both HDL and LDL was responsible for the hydrolysis of d(13)-PGPC. These results suggest that short chain-oxPC and lysoPC can transfer between lipoproteins quickly and can be enzymatically converted from oxPC to lysoPC and from lysoPC to diacyl-PC in the presence of HDL.
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spelling pubmed-77129932020-12-04 Transfer and Enzyme-Mediated Metabolism of Oxidized Phosphatidylcholine and Lysophosphatidylcholine between Low- and High-Density Lipoproteins Sawada, Naoko Obama, Takashi Mizuno, Mirei Fukuhara, Kiyoshi Iwamoto, Sanju Aiuchi, Toshihiro Makiyama, Tomohiko Itabe, Hiroyuki Antioxidants (Basel) Article Oxidized low-density lipoprotein (oxLDL) and oxidized high-density lipoprotein (oxHDL), known as risk factors for cardiovascular disease, have been observed in plasma and atheromatous plaques. In a previous study, the content of oxidized phosphatidylcholine (oxPC) and lysophosphatidylcholine (lysoPC) species stayed constant in isolated in vivo oxLDL but increased in copper-induced oxLDL in vitro. In this study, we prepared synthetic deuterium-labeled 1-palmitoyl lysoPC and palmitoyl-glutaroyl PC (PGPC), a short chain-oxPC to elucidate the metabolic fate of oxPC and lysoPC in oxLDL in the presence of HDL. When LDL preloaded with d(13)-lysoPC was mixed with HDL, d(13)-lysoPC was recovered in both the LDL and HDL fractions equally. d(13)-LysoPC decreased by 50% after 4 h of incubation, while d(13)-PC increased in both fractions. Diacyl-PC production was abolished by an inhibitor of lecithin-cholesterol acyltransferase (LCAT). When d(13)-PGPC-preloaded LDL was incubated with HDL, d(13)-PGPC was transferred to HDL in a dose-dependent manner when both LCAT and lipoprotein-associated phospholipase A(2) (Lp-PLA(2)) were inhibited. Lp-PLA(2) in both HDL and LDL was responsible for the hydrolysis of d(13)-PGPC. These results suggest that short chain-oxPC and lysoPC can transfer between lipoproteins quickly and can be enzymatically converted from oxPC to lysoPC and from lysoPC to diacyl-PC in the presence of HDL. MDPI 2020-10-26 /pmc/articles/PMC7712993/ /pubmed/33114515 http://dx.doi.org/10.3390/antiox9111045 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sawada, Naoko
Obama, Takashi
Mizuno, Mirei
Fukuhara, Kiyoshi
Iwamoto, Sanju
Aiuchi, Toshihiro
Makiyama, Tomohiko
Itabe, Hiroyuki
Transfer and Enzyme-Mediated Metabolism of Oxidized Phosphatidylcholine and Lysophosphatidylcholine between Low- and High-Density Lipoproteins
title Transfer and Enzyme-Mediated Metabolism of Oxidized Phosphatidylcholine and Lysophosphatidylcholine between Low- and High-Density Lipoproteins
title_full Transfer and Enzyme-Mediated Metabolism of Oxidized Phosphatidylcholine and Lysophosphatidylcholine between Low- and High-Density Lipoproteins
title_fullStr Transfer and Enzyme-Mediated Metabolism of Oxidized Phosphatidylcholine and Lysophosphatidylcholine between Low- and High-Density Lipoproteins
title_full_unstemmed Transfer and Enzyme-Mediated Metabolism of Oxidized Phosphatidylcholine and Lysophosphatidylcholine between Low- and High-Density Lipoproteins
title_short Transfer and Enzyme-Mediated Metabolism of Oxidized Phosphatidylcholine and Lysophosphatidylcholine between Low- and High-Density Lipoproteins
title_sort transfer and enzyme-mediated metabolism of oxidized phosphatidylcholine and lysophosphatidylcholine between low- and high-density lipoproteins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7712993/
https://www.ncbi.nlm.nih.gov/pubmed/33114515
http://dx.doi.org/10.3390/antiox9111045
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