Cargando…

Extracellular-superoxide dismutase DNA methylation promotes oxidative stress in homocysteine-induced atherosclerosis: EC-SOD DNA methylation regulates atherosclerosis in ApoE (–/–) mice

In the present study, we investigate the effect of homocysteine (Hcy) on extracellular-superoxide dismutase (EC-SOD) DNA methylation in the aorta of mice, and explore the underlying mechanism in macrophages, trying to identify the key targets of Hcy-induced EC-SOD methylation changes. ApoE (–/–) mic...

Descripción completa

Detalles Bibliográficos
Autores principales: Ma, Shengchao, Lu, Guanjun, Zhang, Qing, Ding, Ning, Jie, Yuzhen, Zhang, Hui, Xu, Lingbo, Xie, Lin, Yang, Xiaoling, Zhang, Huiping, Jiang, Yideng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9827811/
https://www.ncbi.nlm.nih.gov/pubmed/35866603
http://dx.doi.org/10.3724/abbs.2022093
_version_ 1784867126121594880
author Ma, Shengchao
Lu, Guanjun
Zhang, Qing
Ding, Ning
Jie, Yuzhen
Zhang, Hui
Xu, Lingbo
Xie, Lin
Yang, Xiaoling
Zhang, Huiping
Jiang, Yideng
author_facet Ma, Shengchao
Lu, Guanjun
Zhang, Qing
Ding, Ning
Jie, Yuzhen
Zhang, Hui
Xu, Lingbo
Xie, Lin
Yang, Xiaoling
Zhang, Huiping
Jiang, Yideng
author_sort Ma, Shengchao
collection PubMed
description In the present study, we investigate the effect of homocysteine (Hcy) on extracellular-superoxide dismutase (EC-SOD) DNA methylation in the aorta of mice, and explore the underlying mechanism in macrophages, trying to identify the key targets of Hcy-induced EC-SOD methylation changes. ApoE (–/–) mice are fed different diets for 15 weeks, EC-SOD and DNA methyltransferase 1 (DNMT1) expression levels are detected by RT-PCR and western blot analysis. EC-SOD methylation levels are assessed by ntMS-PCR. After EC-SOD overexpression or knockdown in macrophages, following the transfection of macrophages with pEGFP-N1-DNMT1, the methylation levels of EC-SOD are detected. Our data show that the concentrations of Hcy and the area of atherogenic lesions are significantly increased in ApoE (–/–) mice fed with a high-methionine diet, and have a positive correlation with the levels of superoxide anions, which indicates that Hcy-activated superoxide anions enhance the development of atherogenic lesions. EC-SOD expression is suppressed by Hcy, and the content of superoxide anion is increased when EC-SOD is silenced by RNAi in macrophages, suggesting that EC-SOD plays a major part in oxidative stress induced by Hcy. Furthermore, the promoter activity of EC-SOD is increased following transfection with the –1/–1100 fragment, and EC-SOD methylation level is significantly suppressed by Hcy, and more significantly decreased upon DNMT1 overexpression. In conclusion, Hcy may alter the DNA methylation status and DNMT1 acts as the essential enzyme in the methyl transfer process to disturb the status of EC-SOD DNA methylation, leading to decreased expression of EC-SOD and increased oxidative stress and atherosclerosis.
format Online
Article
Text
id pubmed-9827811
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-98278112023-02-10 Extracellular-superoxide dismutase DNA methylation promotes oxidative stress in homocysteine-induced atherosclerosis: EC-SOD DNA methylation regulates atherosclerosis in ApoE (–/–) mice Ma, Shengchao Lu, Guanjun Zhang, Qing Ding, Ning Jie, Yuzhen Zhang, Hui Xu, Lingbo Xie, Lin Yang, Xiaoling Zhang, Huiping Jiang, Yideng Acta Biochim Biophys Sin (Shanghai) Research Article In the present study, we investigate the effect of homocysteine (Hcy) on extracellular-superoxide dismutase (EC-SOD) DNA methylation in the aorta of mice, and explore the underlying mechanism in macrophages, trying to identify the key targets of Hcy-induced EC-SOD methylation changes. ApoE (–/–) mice are fed different diets for 15 weeks, EC-SOD and DNA methyltransferase 1 (DNMT1) expression levels are detected by RT-PCR and western blot analysis. EC-SOD methylation levels are assessed by ntMS-PCR. After EC-SOD overexpression or knockdown in macrophages, following the transfection of macrophages with pEGFP-N1-DNMT1, the methylation levels of EC-SOD are detected. Our data show that the concentrations of Hcy and the area of atherogenic lesions are significantly increased in ApoE (–/–) mice fed with a high-methionine diet, and have a positive correlation with the levels of superoxide anions, which indicates that Hcy-activated superoxide anions enhance the development of atherogenic lesions. EC-SOD expression is suppressed by Hcy, and the content of superoxide anion is increased when EC-SOD is silenced by RNAi in macrophages, suggesting that EC-SOD plays a major part in oxidative stress induced by Hcy. Furthermore, the promoter activity of EC-SOD is increased following transfection with the –1/–1100 fragment, and EC-SOD methylation level is significantly suppressed by Hcy, and more significantly decreased upon DNMT1 overexpression. In conclusion, Hcy may alter the DNA methylation status and DNMT1 acts as the essential enzyme in the methyl transfer process to disturb the status of EC-SOD DNA methylation, leading to decreased expression of EC-SOD and increased oxidative stress and atherosclerosis. Oxford University Press 2022-07-22 /pmc/articles/PMC9827811/ /pubmed/35866603 http://dx.doi.org/10.3724/abbs.2022093 Text en © The Author(s) 2021. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Ma, Shengchao
Lu, Guanjun
Zhang, Qing
Ding, Ning
Jie, Yuzhen
Zhang, Hui
Xu, Lingbo
Xie, Lin
Yang, Xiaoling
Zhang, Huiping
Jiang, Yideng
Extracellular-superoxide dismutase DNA methylation promotes oxidative stress in homocysteine-induced atherosclerosis: EC-SOD DNA methylation regulates atherosclerosis in ApoE (–/–) mice
title Extracellular-superoxide dismutase DNA methylation promotes oxidative stress in homocysteine-induced atherosclerosis: EC-SOD DNA methylation regulates atherosclerosis in ApoE (–/–) mice
title_full Extracellular-superoxide dismutase DNA methylation promotes oxidative stress in homocysteine-induced atherosclerosis: EC-SOD DNA methylation regulates atherosclerosis in ApoE (–/–) mice
title_fullStr Extracellular-superoxide dismutase DNA methylation promotes oxidative stress in homocysteine-induced atherosclerosis: EC-SOD DNA methylation regulates atherosclerosis in ApoE (–/–) mice
title_full_unstemmed Extracellular-superoxide dismutase DNA methylation promotes oxidative stress in homocysteine-induced atherosclerosis: EC-SOD DNA methylation regulates atherosclerosis in ApoE (–/–) mice
title_short Extracellular-superoxide dismutase DNA methylation promotes oxidative stress in homocysteine-induced atherosclerosis: EC-SOD DNA methylation regulates atherosclerosis in ApoE (–/–) mice
title_sort extracellular-superoxide dismutase dna methylation promotes oxidative stress in homocysteine-induced atherosclerosis: ec-sod dna methylation regulates atherosclerosis in apoe (–/–) mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9827811/
https://www.ncbi.nlm.nih.gov/pubmed/35866603
http://dx.doi.org/10.3724/abbs.2022093
work_keys_str_mv AT mashengchao extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice
AT luguanjun extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice
AT zhangqing extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice
AT dingning extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice
AT jieyuzhen extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice
AT zhanghui extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice
AT xulingbo extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice
AT xielin extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice
AT yangxiaoling extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice
AT zhanghuiping extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice
AT jiangyideng extracellularsuperoxidedismutasednamethylationpromotesoxidativestressinhomocysteineinducedatherosclerosisecsoddnamethylationregulatesatherosclerosisinapoemice