Differentially expressed circRNA and functional pathways in the hippocampus of epileptic mice based on next‐generation sequencing

Abstract Epilepsy is a clinical syndrome caused by the highly synchronized abnormal discharge of brain neurons. It has the characteristics of paroxysmal, transient, repetitive, and stereotyped. Circular RNAs (circRNAs) are a recently discovered type of noncoding RNA with diverse cellular functions r...

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Main Authors: Xian‐Qiu Liao, Hai‐Chun Yu, Li‐Mei Diao, Ling Lu, Huan Li, Yan‐Ying Zhou, Hong‐Ling Qin, Qi‐Liu Huang, Ting‐Ting Lv, Xiao‐Mei Huang
Format: Article
Language:English
Published: Wiley 2021-09-01
Series:Kaohsiung Journal of Medical Sciences
Subjects:
Online Access:https://doi.org/10.1002/kjm2.12404
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spelling doaj-61674e473516486c8b7e6000992bbc3d2021-09-01T09:28:20ZengWileyKaohsiung Journal of Medical Sciences1607-551X2410-86502021-09-0137980381110.1002/kjm2.12404Differentially expressed circRNA and functional pathways in the hippocampus of epileptic mice based on next‐generation sequencingXian‐Qiu Liao0Hai‐Chun Yu1Li‐Mei Diao2Ling Lu3Huan Li4Yan‐Ying Zhou5Hong‐Ling Qin6Qi‐Liu Huang7Ting‐Ting Lv8Xiao‐Mei Huang9Department of Graduate School Guangxi University of Chinese Medicine Nanning Guangxi ChinaGuangxi Technological College of Machinery and Electricity Nanning ChinaDepartment of Neurology The First Affiliated Hospital of Guangxi University of Chinese Medicine Nanning ChinaDepartment of Graduate School Guangxi University of Chinese Medicine Nanning Guangxi ChinaDepartment of Graduate School Guangxi University of Chinese Medicine Nanning Guangxi ChinaDepartment of Neurology The First Affiliated Hospital of Guangxi University of Chinese Medicine Nanning ChinaDepartment of Neurology The First Affiliated Hospital of Guangxi University of Chinese Medicine Nanning ChinaDepartment of Graduate School Guangxi University of Chinese Medicine Nanning Guangxi ChinaDepartment of Graduate School Guangxi University of Chinese Medicine Nanning Guangxi ChinaDepartment of Graduate School Guangxi University of Chinese Medicine Nanning Guangxi ChinaAbstract Epilepsy is a clinical syndrome caused by the highly synchronized abnormal discharge of brain neurons. It has the characteristics of paroxysmal, transient, repetitive, and stereotyped. Circular RNAs (circRNAs) are a recently discovered type of noncoding RNA with diverse cellular functions related to their excellent stability; additionally, some circRNAs can bind and regulate microRNAs (miRNAs). The present study was designed to screen the differentially expressed circRNA in an acute seizure model of epilepsy in mice, analyze the related miRNA and mRNA, and study their participating functions and enrichment pathways. In order to obtain the differential expression of circRNA in epilepsy and infer their function, we used next‐generation sequencing and found significantly different transcripts. CIRI (circRNA identifier) software was used to predict circRNA from the hippocampus cDNA, EdgeR was applied for the differential circRNA analysis between samples, and Cytoscape 3.7.2 software was used to draw the network diagram. A total of 10,388 differentially expressed circRNAs were identified, of which 34 were upregulated and 66 were downregulated. Among them, mm9_circ_008777 and mm9_circ_004424 were the key upregulated genes, and their expression in the epilepsy group was verified using Quantitative real‐time PCR (QPCR). The analysis indicated that the extracted gene ontology terms and Kyoto Encyclopedia of Genes and Genomes pathways were closely related to several epilepsy‐associated processes. This study determined that mm9_circ_008777 and mm9_circ_004424 are potential biomarkers of epilepsy, which play important roles in epilepsy‐related pathways. These results could help improve the understanding of the biological mechanisms of circRNAs and epilepsy treatments.https://doi.org/10.1002/kjm2.12404circRNAepilepsynext‐generation sequencingpathway analysis
collection DOAJ
language English
format Article
sources DOAJ
author Xian‐Qiu Liao
Hai‐Chun Yu
Li‐Mei Diao
Ling Lu
Huan Li
Yan‐Ying Zhou
Hong‐Ling Qin
Qi‐Liu Huang
Ting‐Ting Lv
Xiao‐Mei Huang
spellingShingle Xian‐Qiu Liao
Hai‐Chun Yu
Li‐Mei Diao
Ling Lu
Huan Li
Yan‐Ying Zhou
Hong‐Ling Qin
Qi‐Liu Huang
Ting‐Ting Lv
Xiao‐Mei Huang
Differentially expressed circRNA and functional pathways in the hippocampus of epileptic mice based on next‐generation sequencing
Kaohsiung Journal of Medical Sciences
circRNA
epilepsy
next‐generation sequencing
pathway analysis
author_facet Xian‐Qiu Liao
Hai‐Chun Yu
Li‐Mei Diao
Ling Lu
Huan Li
Yan‐Ying Zhou
Hong‐Ling Qin
Qi‐Liu Huang
Ting‐Ting Lv
Xiao‐Mei Huang
author_sort Xian‐Qiu Liao
title Differentially expressed circRNA and functional pathways in the hippocampus of epileptic mice based on next‐generation sequencing
title_short Differentially expressed circRNA and functional pathways in the hippocampus of epileptic mice based on next‐generation sequencing
title_full Differentially expressed circRNA and functional pathways in the hippocampus of epileptic mice based on next‐generation sequencing
title_fullStr Differentially expressed circRNA and functional pathways in the hippocampus of epileptic mice based on next‐generation sequencing
title_full_unstemmed Differentially expressed circRNA and functional pathways in the hippocampus of epileptic mice based on next‐generation sequencing
title_sort differentially expressed circrna and functional pathways in the hippocampus of epileptic mice based on next‐generation sequencing
publisher Wiley
series Kaohsiung Journal of Medical Sciences
issn 1607-551X
2410-8650
publishDate 2021-09-01
description Abstract Epilepsy is a clinical syndrome caused by the highly synchronized abnormal discharge of brain neurons. It has the characteristics of paroxysmal, transient, repetitive, and stereotyped. Circular RNAs (circRNAs) are a recently discovered type of noncoding RNA with diverse cellular functions related to their excellent stability; additionally, some circRNAs can bind and regulate microRNAs (miRNAs). The present study was designed to screen the differentially expressed circRNA in an acute seizure model of epilepsy in mice, analyze the related miRNA and mRNA, and study their participating functions and enrichment pathways. In order to obtain the differential expression of circRNA in epilepsy and infer their function, we used next‐generation sequencing and found significantly different transcripts. CIRI (circRNA identifier) software was used to predict circRNA from the hippocampus cDNA, EdgeR was applied for the differential circRNA analysis between samples, and Cytoscape 3.7.2 software was used to draw the network diagram. A total of 10,388 differentially expressed circRNAs were identified, of which 34 were upregulated and 66 were downregulated. Among them, mm9_circ_008777 and mm9_circ_004424 were the key upregulated genes, and their expression in the epilepsy group was verified using Quantitative real‐time PCR (QPCR). The analysis indicated that the extracted gene ontology terms and Kyoto Encyclopedia of Genes and Genomes pathways were closely related to several epilepsy‐associated processes. This study determined that mm9_circ_008777 and mm9_circ_004424 are potential biomarkers of epilepsy, which play important roles in epilepsy‐related pathways. These results could help improve the understanding of the biological mechanisms of circRNAs and epilepsy treatments.
topic circRNA
epilepsy
next‐generation sequencing
pathway analysis
url https://doi.org/10.1002/kjm2.12404
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