Oxidative stress mediates the apoptosis and epigenetic modification of the Bcl-2 promoter via DNMT1 in a cigarette smoke-induced emphysema model

Abstract Background Emphysema is a crucial pathological characteristic of chronic obstructive pulmonary disease (COPD). Oxidative stress, apoptosis and epigenetic mechanisms contribute to the pathogenesis of emphysema. However, an attempt to accurately identify whether these mechanisms interact with...

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Main Authors: Huihui Zeng, Tiao Li, Xue He, Shan Cai, Hong Luo, Ping Chen, Yan Chen
Format: Article
Language:English
Published: BMC 2020-09-01
Series:Respiratory Research
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12931-020-01495-w
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spelling doaj-73bacc863c014f80b7bce87e7bac32e22020-11-25T02:25:03ZengBMCRespiratory Research1465-993X2020-09-0121111410.1186/s12931-020-01495-wOxidative stress mediates the apoptosis and epigenetic modification of the Bcl-2 promoter via DNMT1 in a cigarette smoke-induced emphysema modelHuihui Zeng0Tiao Li1Xue He2Shan Cai3Hong Luo4Ping Chen5Yan Chen6Department of Pulmonary and Critical Care Medicine, the Second Xiangya Hospital, Central South UniversityDepartment of Pulmonary and Critical Care Medicine, the Second Xiangya Hospital, Central South UniversityDepartment of Pulmonary and Critical Care Medicine, the Second Xiangya Hospital, Central South UniversityDepartment of Pulmonary and Critical Care Medicine, the Second Xiangya Hospital, Central South UniversityDepartment of Pulmonary and Critical Care Medicine, the Second Xiangya Hospital, Central South UniversityDepartment of Pulmonary and Critical Care Medicine, the Second Xiangya Hospital, Central South UniversityDepartment of Pulmonary and Critical Care Medicine, the Second Xiangya Hospital, Central South UniversityAbstract Background Emphysema is a crucial pathological characteristic of chronic obstructive pulmonary disease (COPD). Oxidative stress, apoptosis and epigenetic mechanisms contribute to the pathogenesis of emphysema. However, an attempt to accurately identify whether these mechanisms interact with each other and how they are triggered has never been conducted. Method The total reactive oxygen species (ROS) level, pulmonary apoptosis and B-cell lymphoma/leukemia-2 (Bcl-2) expression, an apoptosis regulator, were detected in samples from COPD patients. Bisulfite sequencing PCR (BSP) was conducted to observe the alterations in the methylation of the Bcl-2 promoter in specimens. The dysregulation of DNA methyltransferase enzyme 1 (DNMT1), a vital DNA methyltransferase enzyme, in the lungs of patients was confirmed through western blotting. To find out interactions between oxidative stress and DNA methylation in emphysema, mouse models were built with antioxidant treatment and DNMT1 silencing, and were examined with the pulmonary apoptosis, Bcl-2 and DNMT1 levels, and epigenetic alterations of Bcl-2. Results Higher ROS levels and pulmonary apoptosis were observed in COPD patients than in healthy controls. Downregulated Bcl-2 expression with increased promoter methylation and DNMT1 protein expression was found in COPD patients. Antioxidant treatment reduced the level of ROS, DNMT1 protein and emphysematous progression in the smoking models. Following DNMT1 blockade, smoking models showed improved lung function, pulmonary apoptosis, emphysematous progression, and increased Bcl-2 protein level with less promoter methylation than emphysema mice. Conclusion Cigarette-induced oxidative stress mediates pulmonary apoptosis and hypermethylation of the Bcl-2 promoter in emphysema models through DNMT1.http://link.springer.com/article/10.1186/s12931-020-01495-wOxidative stressApoptosisHypermethylationBcl-2DNMT1
collection DOAJ
language English
format Article
sources DOAJ
author Huihui Zeng
Tiao Li
Xue He
Shan Cai
Hong Luo
Ping Chen
Yan Chen
spellingShingle Huihui Zeng
Tiao Li
Xue He
Shan Cai
Hong Luo
Ping Chen
Yan Chen
Oxidative stress mediates the apoptosis and epigenetic modification of the Bcl-2 promoter via DNMT1 in a cigarette smoke-induced emphysema model
Respiratory Research
Oxidative stress
Apoptosis
Hypermethylation
Bcl-2
DNMT1
author_facet Huihui Zeng
Tiao Li
Xue He
Shan Cai
Hong Luo
Ping Chen
Yan Chen
author_sort Huihui Zeng
title Oxidative stress mediates the apoptosis and epigenetic modification of the Bcl-2 promoter via DNMT1 in a cigarette smoke-induced emphysema model
title_short Oxidative stress mediates the apoptosis and epigenetic modification of the Bcl-2 promoter via DNMT1 in a cigarette smoke-induced emphysema model
title_full Oxidative stress mediates the apoptosis and epigenetic modification of the Bcl-2 promoter via DNMT1 in a cigarette smoke-induced emphysema model
title_fullStr Oxidative stress mediates the apoptosis and epigenetic modification of the Bcl-2 promoter via DNMT1 in a cigarette smoke-induced emphysema model
title_full_unstemmed Oxidative stress mediates the apoptosis and epigenetic modification of the Bcl-2 promoter via DNMT1 in a cigarette smoke-induced emphysema model
title_sort oxidative stress mediates the apoptosis and epigenetic modification of the bcl-2 promoter via dnmt1 in a cigarette smoke-induced emphysema model
publisher BMC
series Respiratory Research
issn 1465-993X
publishDate 2020-09-01
description Abstract Background Emphysema is a crucial pathological characteristic of chronic obstructive pulmonary disease (COPD). Oxidative stress, apoptosis and epigenetic mechanisms contribute to the pathogenesis of emphysema. However, an attempt to accurately identify whether these mechanisms interact with each other and how they are triggered has never been conducted. Method The total reactive oxygen species (ROS) level, pulmonary apoptosis and B-cell lymphoma/leukemia-2 (Bcl-2) expression, an apoptosis regulator, were detected in samples from COPD patients. Bisulfite sequencing PCR (BSP) was conducted to observe the alterations in the methylation of the Bcl-2 promoter in specimens. The dysregulation of DNA methyltransferase enzyme 1 (DNMT1), a vital DNA methyltransferase enzyme, in the lungs of patients was confirmed through western blotting. To find out interactions between oxidative stress and DNA methylation in emphysema, mouse models were built with antioxidant treatment and DNMT1 silencing, and were examined with the pulmonary apoptosis, Bcl-2 and DNMT1 levels, and epigenetic alterations of Bcl-2. Results Higher ROS levels and pulmonary apoptosis were observed in COPD patients than in healthy controls. Downregulated Bcl-2 expression with increased promoter methylation and DNMT1 protein expression was found in COPD patients. Antioxidant treatment reduced the level of ROS, DNMT1 protein and emphysematous progression in the smoking models. Following DNMT1 blockade, smoking models showed improved lung function, pulmonary apoptosis, emphysematous progression, and increased Bcl-2 protein level with less promoter methylation than emphysema mice. Conclusion Cigarette-induced oxidative stress mediates pulmonary apoptosis and hypermethylation of the Bcl-2 promoter in emphysema models through DNMT1.
topic Oxidative stress
Apoptosis
Hypermethylation
Bcl-2
DNMT1
url http://link.springer.com/article/10.1186/s12931-020-01495-w
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