Cargando…

LncRNA DANCR attenuates brain microvascular endothelial cell damage induced by oxygen-glucose deprivation through regulating of miR-33a-5p/XBP1s

Brain microvascular endothelial cell (BMEC) survival and angiogenesis after ischemic stroke has great significance for improving the prognosis of stroke. Abnormal variants of lncRNAs are closely associated with stroke. In this study, we examined the effects and molecular mechanisms of differentiatio...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Mengqi, Tang, Mimi, Wu, Qian, Wang, Zhuolu, Chen, Zhuohui, Ding, Hui, Hu, Xinhang, Lv, Xinyi, Zhao, Songfeng, Sun, Jingyan, Kang, Shuntong, Wu, Tong, Xiao, Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7053632/
https://www.ncbi.nlm.nih.gov/pubmed/31986122
http://dx.doi.org/10.18632/aging.102712
_version_ 1783503075403628544
author Zhang, Mengqi
Tang, Mimi
Wu, Qian
Wang, Zhuolu
Chen, Zhuohui
Ding, Hui
Hu, Xinhang
Lv, Xinyi
Zhao, Songfeng
Sun, Jingyan
Kang, Shuntong
Wu, Tong
Xiao, Bo
author_facet Zhang, Mengqi
Tang, Mimi
Wu, Qian
Wang, Zhuolu
Chen, Zhuohui
Ding, Hui
Hu, Xinhang
Lv, Xinyi
Zhao, Songfeng
Sun, Jingyan
Kang, Shuntong
Wu, Tong
Xiao, Bo
author_sort Zhang, Mengqi
collection PubMed
description Brain microvascular endothelial cell (BMEC) survival and angiogenesis after ischemic stroke has great significance for improving the prognosis of stroke. Abnormal variants of lncRNAs are closely associated with stroke. In this study, we examined the effects and molecular mechanisms of differentiation antagonizing non-protein coding RNA (DANCR) on apoptosis, migration, and angiogenesis of oxygen-glucose deprivation (OGD)-treated BMECs. We found that DANCR expression significantly increased at 2, 4, 6, 8, and 10 h after OGD. DANCR overexpression promoted cell viability, migration, and angiogenesis in OGD-treated BMECs. Additionally, we found that X-box binding protein l splicing (XBP1s) expression was positively correlated with DANCR expression. DANCR overexpression promoted XBP1s expression in OGD-treated BMECs. Silenced XBP1s reversed the effect of DANCR in OGD-treated BMECs. Furthermore, we found that microRNA (miR)-33a-5p bound to DANCR and the 3'-UTR of XBP1. miR-33a-5p overexpression inhibited proliferation, migration, angiogenesis, and XBP1s expression in OGD-treated DANCR-overexpressing BMECs, reversing the protective effect of DANCR. Finally, we found that XBP1s expression promoted proliferation, migration, and angiogenesis, reversing the damaging effect of miR-33a-5p. In conclusion, DANCR enhanced survival and angiogenesis in OGD-treated BMECs through the miR-33a-5p/XBP1s axis.
format Online
Article
Text
id pubmed-7053632
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Impact Journals
record_format MEDLINE/PubMed
spelling pubmed-70536322020-03-12 LncRNA DANCR attenuates brain microvascular endothelial cell damage induced by oxygen-glucose deprivation through regulating of miR-33a-5p/XBP1s Zhang, Mengqi Tang, Mimi Wu, Qian Wang, Zhuolu Chen, Zhuohui Ding, Hui Hu, Xinhang Lv, Xinyi Zhao, Songfeng Sun, Jingyan Kang, Shuntong Wu, Tong Xiao, Bo Aging (Albany NY) Research Paper Brain microvascular endothelial cell (BMEC) survival and angiogenesis after ischemic stroke has great significance for improving the prognosis of stroke. Abnormal variants of lncRNAs are closely associated with stroke. In this study, we examined the effects and molecular mechanisms of differentiation antagonizing non-protein coding RNA (DANCR) on apoptosis, migration, and angiogenesis of oxygen-glucose deprivation (OGD)-treated BMECs. We found that DANCR expression significantly increased at 2, 4, 6, 8, and 10 h after OGD. DANCR overexpression promoted cell viability, migration, and angiogenesis in OGD-treated BMECs. Additionally, we found that X-box binding protein l splicing (XBP1s) expression was positively correlated with DANCR expression. DANCR overexpression promoted XBP1s expression in OGD-treated BMECs. Silenced XBP1s reversed the effect of DANCR in OGD-treated BMECs. Furthermore, we found that microRNA (miR)-33a-5p bound to DANCR and the 3'-UTR of XBP1. miR-33a-5p overexpression inhibited proliferation, migration, angiogenesis, and XBP1s expression in OGD-treated DANCR-overexpressing BMECs, reversing the protective effect of DANCR. Finally, we found that XBP1s expression promoted proliferation, migration, and angiogenesis, reversing the damaging effect of miR-33a-5p. In conclusion, DANCR enhanced survival and angiogenesis in OGD-treated BMECs through the miR-33a-5p/XBP1s axis. Impact Journals 2020-01-26 /pmc/articles/PMC7053632/ /pubmed/31986122 http://dx.doi.org/10.18632/aging.102712 Text en Copyright © 2020 Zhang et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zhang, Mengqi
Tang, Mimi
Wu, Qian
Wang, Zhuolu
Chen, Zhuohui
Ding, Hui
Hu, Xinhang
Lv, Xinyi
Zhao, Songfeng
Sun, Jingyan
Kang, Shuntong
Wu, Tong
Xiao, Bo
LncRNA DANCR attenuates brain microvascular endothelial cell damage induced by oxygen-glucose deprivation through regulating of miR-33a-5p/XBP1s
title LncRNA DANCR attenuates brain microvascular endothelial cell damage induced by oxygen-glucose deprivation through regulating of miR-33a-5p/XBP1s
title_full LncRNA DANCR attenuates brain microvascular endothelial cell damage induced by oxygen-glucose deprivation through regulating of miR-33a-5p/XBP1s
title_fullStr LncRNA DANCR attenuates brain microvascular endothelial cell damage induced by oxygen-glucose deprivation through regulating of miR-33a-5p/XBP1s
title_full_unstemmed LncRNA DANCR attenuates brain microvascular endothelial cell damage induced by oxygen-glucose deprivation through regulating of miR-33a-5p/XBP1s
title_short LncRNA DANCR attenuates brain microvascular endothelial cell damage induced by oxygen-glucose deprivation through regulating of miR-33a-5p/XBP1s
title_sort lncrna dancr attenuates brain microvascular endothelial cell damage induced by oxygen-glucose deprivation through regulating of mir-33a-5p/xbp1s
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7053632/
https://www.ncbi.nlm.nih.gov/pubmed/31986122
http://dx.doi.org/10.18632/aging.102712
work_keys_str_mv AT zhangmengqi lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT tangmimi lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT wuqian lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT wangzhuolu lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT chenzhuohui lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT dinghui lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT huxinhang lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT lvxinyi lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT zhaosongfeng lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT sunjingyan lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT kangshuntong lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT wutong lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s
AT xiaobo lncrnadancrattenuatesbrainmicrovascularendothelialcelldamageinducedbyoxygenglucosedeprivationthroughregulatingofmir33a5pxbp1s