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Bach1 Induces Endothelial Cell Apoptosis and Cell-Cycle Arrest through ROS Generation

The transcription factor BTB and CNC homology 1 (Bach1) regulates genes involved in the oxidative stress response and cell-cycle progression. We have recently shown that Bach1 impairs cell proliferation and promotes apoptosis in cultured endothelial cells (ECs), but the underlying mechanisms are lar...

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Autores principales: Wang, Xinhong, Liu, Junxu, Jiang, Li, Wei, Xiangxiang, Niu, Cong, Wang, Rui, Zhang, Jianyi, Meng, Dan, Yao, Kang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4789484/
https://www.ncbi.nlm.nih.gov/pubmed/27057283
http://dx.doi.org/10.1155/2016/6234043
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author Wang, Xinhong
Liu, Junxu
Jiang, Li
Wei, Xiangxiang
Niu, Cong
Wang, Rui
Zhang, Jianyi
Meng, Dan
Yao, Kang
author_facet Wang, Xinhong
Liu, Junxu
Jiang, Li
Wei, Xiangxiang
Niu, Cong
Wang, Rui
Zhang, Jianyi
Meng, Dan
Yao, Kang
author_sort Wang, Xinhong
collection PubMed
description The transcription factor BTB and CNC homology 1 (Bach1) regulates genes involved in the oxidative stress response and cell-cycle progression. We have recently shown that Bach1 impairs cell proliferation and promotes apoptosis in cultured endothelial cells (ECs), but the underlying mechanisms are largely uncharacterized. Here we demonstrate that Bach1 upregulation impaired the blood flow recovery from hindlimb ischemia and this effect was accompanied both by increases in reactive oxygen species (ROS) and cleaved caspase 3 levels and by declines in the expression of cyclin D1 in the injured tissues. We found that Bach1 overexpression induced mitochondrial ROS production and caspase 3-dependent apoptosis and its depletion attenuated H(2)O(2)-induced apoptosis in cultured human microvascular endothelial cells (HMVECs). Bach1-induced apoptosis was largely abolished when the cells were cultured with N-acetyl-l-cysteine (NAC), a ROS scavenger. Exogenous expression of Bach1 inhibited the cell proliferation and the expression of cyclin D1, induced an S-phase arrest, and increased the expression of cyclin E2, which were partially blocked by NAC. Taken together, our results suggest that Bach1 suppresses cell proliferation and induces cell-cycle arrest and apoptosis by increasing mitochondrial ROS production, suggesting that Bach1 may be a promising treatment target for the treatment of vascular diseases.
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spelling pubmed-47894842016-04-07 Bach1 Induces Endothelial Cell Apoptosis and Cell-Cycle Arrest through ROS Generation Wang, Xinhong Liu, Junxu Jiang, Li Wei, Xiangxiang Niu, Cong Wang, Rui Zhang, Jianyi Meng, Dan Yao, Kang Oxid Med Cell Longev Research Article The transcription factor BTB and CNC homology 1 (Bach1) regulates genes involved in the oxidative stress response and cell-cycle progression. We have recently shown that Bach1 impairs cell proliferation and promotes apoptosis in cultured endothelial cells (ECs), but the underlying mechanisms are largely uncharacterized. Here we demonstrate that Bach1 upregulation impaired the blood flow recovery from hindlimb ischemia and this effect was accompanied both by increases in reactive oxygen species (ROS) and cleaved caspase 3 levels and by declines in the expression of cyclin D1 in the injured tissues. We found that Bach1 overexpression induced mitochondrial ROS production and caspase 3-dependent apoptosis and its depletion attenuated H(2)O(2)-induced apoptosis in cultured human microvascular endothelial cells (HMVECs). Bach1-induced apoptosis was largely abolished when the cells were cultured with N-acetyl-l-cysteine (NAC), a ROS scavenger. Exogenous expression of Bach1 inhibited the cell proliferation and the expression of cyclin D1, induced an S-phase arrest, and increased the expression of cyclin E2, which were partially blocked by NAC. Taken together, our results suggest that Bach1 suppresses cell proliferation and induces cell-cycle arrest and apoptosis by increasing mitochondrial ROS production, suggesting that Bach1 may be a promising treatment target for the treatment of vascular diseases. Hindawi Publishing Corporation 2016 2016-02-29 /pmc/articles/PMC4789484/ /pubmed/27057283 http://dx.doi.org/10.1155/2016/6234043 Text en Copyright © 2016 Xinhong Wang et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wang, Xinhong
Liu, Junxu
Jiang, Li
Wei, Xiangxiang
Niu, Cong
Wang, Rui
Zhang, Jianyi
Meng, Dan
Yao, Kang
Bach1 Induces Endothelial Cell Apoptosis and Cell-Cycle Arrest through ROS Generation
title Bach1 Induces Endothelial Cell Apoptosis and Cell-Cycle Arrest through ROS Generation
title_full Bach1 Induces Endothelial Cell Apoptosis and Cell-Cycle Arrest through ROS Generation
title_fullStr Bach1 Induces Endothelial Cell Apoptosis and Cell-Cycle Arrest through ROS Generation
title_full_unstemmed Bach1 Induces Endothelial Cell Apoptosis and Cell-Cycle Arrest through ROS Generation
title_short Bach1 Induces Endothelial Cell Apoptosis and Cell-Cycle Arrest through ROS Generation
title_sort bach1 induces endothelial cell apoptosis and cell-cycle arrest through ros generation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4789484/
https://www.ncbi.nlm.nih.gov/pubmed/27057283
http://dx.doi.org/10.1155/2016/6234043
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