Circular RNA circPHKA2 Relieves OGD-Induced Human Brain Microvascular Endothelial Cell Injuries through Competitively Binding miR-574-5p to Modulate SOD2

Background. Circular RNA phosphorylase kinase regulatory subunit alpha 2 (circPHKA2; hsa_circ_0090002) has a significantly, specifically different expression in acute ischemic stroke (AIS) patients’ blood. Here, we intended to investigate the role and mechanism of circPHKA2 in oxygen-glucose depriva...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Xiaobo Yang, Xiuying Li, Chuanhong Zhong, Jianhua Peng, Jinwei Pang, Tangming Peng, Weifeng Wan, Xianglong Li
Formato: article
Lenguaje:EN
Publicado: Hindawi Limited 2021
Materias:
Acceso en línea:https://doaj.org/article/1090818f4abd4a888a64a9aa55490f9f
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:1090818f4abd4a888a64a9aa55490f9f
record_format dspace
spelling oai:doaj.org-article:1090818f4abd4a888a64a9aa55490f9f2021-11-22T01:10:42ZCircular RNA circPHKA2 Relieves OGD-Induced Human Brain Microvascular Endothelial Cell Injuries through Competitively Binding miR-574-5p to Modulate SOD21942-099410.1155/2021/3823122https://doaj.org/article/1090818f4abd4a888a64a9aa55490f9f2021-01-01T00:00:00Zhttp://dx.doi.org/10.1155/2021/3823122https://doaj.org/toc/1942-0994Background. Circular RNA phosphorylase kinase regulatory subunit alpha 2 (circPHKA2; hsa_circ_0090002) has a significantly, specifically different expression in acute ischemic stroke (AIS) patients’ blood. Here, we intended to investigate the role and mechanism of circPHKA2 in oxygen-glucose deprivation- (OGD-) induced stoke model in human brain microvascular endothelial cells (HBMEC). Methods. Expression of circPHKA2, microRNA- (miR-) 574-5p, and superoxide dismutase-2 (SOD2) was detected by quantitative PCR and western blotting. Cell injury was measured by detecting cell proliferation (EdU assay and CCK-8 assay), migration (transwell assay), neovascularization (tube formation assay), apoptosis (flow cytometry and western blotting), endoplasmic reticulum stress (western blotting), and oxidative stress (assay kits). Direct intermolecular interaction was determined by bioinformatics algorithms, dual-luciferase reporter assay, biotin-labelled miRNA capture, and argonaute 2 RNA immunoprecipitation. Results. circPHKA2 was downregulated in AIS patients’ blood in SOD2-correlated manner. Reexpressing circPHKA2 rescued EdU incorporation, cell viability and migration, tube formation, B cell lymphoma-2 (Bcl-2) expression, and SOD activity of OGD-induced HBMEC and alleviate apoptotic rate and levels of Bcl-2-associated protein (Bax), glucose-regulated protein 78 kD (GRP78), C/EBP-homologous protein (CHOP), caspase-12, reactive oxygen species (ROS), and malondialdehyde (MDA). Additionally, blocking SOD2 partially attenuated these roles of circPHKA2 overexpression. Molecularly, circPHKA2 upregulated SOD2 expression via interacting with miR-574-5p, and miR-574-5p could target SOD2. Similarly, allied to neurovascular protection of circPHKA2 was the downregulation of miR-574-5p. Conclusion. circPHKA2 could protect HBMEC against OGD-induced cerebral stroke model via the miR-574-5p/SOD2 axis, suggesting circPHKA2 as a novel and promising candidate in ischemic brain injury.Xiaobo YangXiuying LiChuanhong ZhongJianhua PengJinwei PangTangming PengWeifeng WanXianglong LiHindawi LimitedarticleCytologyQH573-671ENOxidative Medicine and Cellular Longevity, Vol 2021 (2021)
institution DOAJ
collection DOAJ
language EN
topic Cytology
QH573-671
spellingShingle Cytology
QH573-671
Xiaobo Yang
Xiuying Li
Chuanhong Zhong
Jianhua Peng
Jinwei Pang
Tangming Peng
Weifeng Wan
Xianglong Li
Circular RNA circPHKA2 Relieves OGD-Induced Human Brain Microvascular Endothelial Cell Injuries through Competitively Binding miR-574-5p to Modulate SOD2
description Background. Circular RNA phosphorylase kinase regulatory subunit alpha 2 (circPHKA2; hsa_circ_0090002) has a significantly, specifically different expression in acute ischemic stroke (AIS) patients’ blood. Here, we intended to investigate the role and mechanism of circPHKA2 in oxygen-glucose deprivation- (OGD-) induced stoke model in human brain microvascular endothelial cells (HBMEC). Methods. Expression of circPHKA2, microRNA- (miR-) 574-5p, and superoxide dismutase-2 (SOD2) was detected by quantitative PCR and western blotting. Cell injury was measured by detecting cell proliferation (EdU assay and CCK-8 assay), migration (transwell assay), neovascularization (tube formation assay), apoptosis (flow cytometry and western blotting), endoplasmic reticulum stress (western blotting), and oxidative stress (assay kits). Direct intermolecular interaction was determined by bioinformatics algorithms, dual-luciferase reporter assay, biotin-labelled miRNA capture, and argonaute 2 RNA immunoprecipitation. Results. circPHKA2 was downregulated in AIS patients’ blood in SOD2-correlated manner. Reexpressing circPHKA2 rescued EdU incorporation, cell viability and migration, tube formation, B cell lymphoma-2 (Bcl-2) expression, and SOD activity of OGD-induced HBMEC and alleviate apoptotic rate and levels of Bcl-2-associated protein (Bax), glucose-regulated protein 78 kD (GRP78), C/EBP-homologous protein (CHOP), caspase-12, reactive oxygen species (ROS), and malondialdehyde (MDA). Additionally, blocking SOD2 partially attenuated these roles of circPHKA2 overexpression. Molecularly, circPHKA2 upregulated SOD2 expression via interacting with miR-574-5p, and miR-574-5p could target SOD2. Similarly, allied to neurovascular protection of circPHKA2 was the downregulation of miR-574-5p. Conclusion. circPHKA2 could protect HBMEC against OGD-induced cerebral stroke model via the miR-574-5p/SOD2 axis, suggesting circPHKA2 as a novel and promising candidate in ischemic brain injury.
format article
author Xiaobo Yang
Xiuying Li
Chuanhong Zhong
Jianhua Peng
Jinwei Pang
Tangming Peng
Weifeng Wan
Xianglong Li
author_facet Xiaobo Yang
Xiuying Li
Chuanhong Zhong
Jianhua Peng
Jinwei Pang
Tangming Peng
Weifeng Wan
Xianglong Li
author_sort Xiaobo Yang
title Circular RNA circPHKA2 Relieves OGD-Induced Human Brain Microvascular Endothelial Cell Injuries through Competitively Binding miR-574-5p to Modulate SOD2
title_short Circular RNA circPHKA2 Relieves OGD-Induced Human Brain Microvascular Endothelial Cell Injuries through Competitively Binding miR-574-5p to Modulate SOD2
title_full Circular RNA circPHKA2 Relieves OGD-Induced Human Brain Microvascular Endothelial Cell Injuries through Competitively Binding miR-574-5p to Modulate SOD2
title_fullStr Circular RNA circPHKA2 Relieves OGD-Induced Human Brain Microvascular Endothelial Cell Injuries through Competitively Binding miR-574-5p to Modulate SOD2
title_full_unstemmed Circular RNA circPHKA2 Relieves OGD-Induced Human Brain Microvascular Endothelial Cell Injuries through Competitively Binding miR-574-5p to Modulate SOD2
title_sort circular rna circphka2 relieves ogd-induced human brain microvascular endothelial cell injuries through competitively binding mir-574-5p to modulate sod2
publisher Hindawi Limited
publishDate 2021
url https://doaj.org/article/1090818f4abd4a888a64a9aa55490f9f
work_keys_str_mv AT xiaoboyang circularrnacircphka2relievesogdinducedhumanbrainmicrovascularendothelialcellinjuriesthroughcompetitivelybindingmir5745ptomodulatesod2
AT xiuyingli circularrnacircphka2relievesogdinducedhumanbrainmicrovascularendothelialcellinjuriesthroughcompetitivelybindingmir5745ptomodulatesod2
AT chuanhongzhong circularrnacircphka2relievesogdinducedhumanbrainmicrovascularendothelialcellinjuriesthroughcompetitivelybindingmir5745ptomodulatesod2
AT jianhuapeng circularrnacircphka2relievesogdinducedhumanbrainmicrovascularendothelialcellinjuriesthroughcompetitivelybindingmir5745ptomodulatesod2
AT jinweipang circularrnacircphka2relievesogdinducedhumanbrainmicrovascularendothelialcellinjuriesthroughcompetitivelybindingmir5745ptomodulatesod2
AT tangmingpeng circularrnacircphka2relievesogdinducedhumanbrainmicrovascularendothelialcellinjuriesthroughcompetitivelybindingmir5745ptomodulatesod2
AT weifengwan circularrnacircphka2relievesogdinducedhumanbrainmicrovascularendothelialcellinjuriesthroughcompetitivelybindingmir5745ptomodulatesod2
AT xianglongli circularrnacircphka2relievesogdinducedhumanbrainmicrovascularendothelialcellinjuriesthroughcompetitivelybindingmir5745ptomodulatesod2
_version_ 1718418323150995456