Identification of the Molecular Events Involved in the Development of Prefrontal Cortex Through the Analysis of RNA-Seq Data From BrainSpan

Human brain development is a complex process that follows sequential orchestration of gene expression, begins at conceptual stages, and continues into adulthood. Altered profile of gene expression drives many cellular and molecular events required for development. Here, the molecular events during d...

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Main Authors: Hadi Najafi, Mohadeseh Naseri, Javad Zahiri, Mehdi Totonchi, Majid Sadeghizadeh
Format: Article
Language:English
Published: SAGE Publishing 2019-06-01
Series:ASN Neuro
Online Access:https://doi.org/10.1177/1759091419854627
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spelling doaj-f73cff8ca94f479baf318625072cdaf02020-11-25T03:24:44ZengSAGE PublishingASN Neuro1759-09142019-06-011110.1177/1759091419854627Identification of the Molecular Events Involved in the Development of Prefrontal Cortex Through the Analysis of RNA-Seq Data From BrainSpanHadi NajafiMohadeseh NaseriJavad ZahiriMehdi TotonchiMajid SadeghizadehHuman brain development is a complex process that follows sequential orchestration of gene expression, begins at conceptual stages, and continues into adulthood. Altered profile of gene expression drives many cellular and molecular events required for development. Here, the molecular events during development of human prefrontal cortex (PFC) (as an important executive part of the brain) were investigated. First, the RNA-sequencing data of BrainSpan were used to obtain differentially expressed genes between each two developmental stages and then, the relevant biological processes and signaling pathways were deduced by gene set enrichment analysis. In addition, the changes in transcriptome landscape of PFC during development were analyzed and the potential biological processes underlie the changes were found. Comparison of the four regions of PFC based on their biological processes showed that additional to common biological processes and signaling pathways, each PFC region had its own molecular characteristics, conforming their previously reported functional roles in brain physiology. The most heterogeneity in transcriptome between the PFC regions was observed at the time of birth which was concurrent with the activity of some region-specific regulatory systems such as DNA methylation, transcription regulation, RNA splicing, and presence of different transcription factors and microRNAs. In conclusion, this study used bioinformatics to present a comprehensive molecular overview on PFC development which may explain the etiology of brain neuropsychiatric disorders originated from malfunctioning of PFC.https://doi.org/10.1177/1759091419854627
collection DOAJ
language English
format Article
sources DOAJ
author Hadi Najafi
Mohadeseh Naseri
Javad Zahiri
Mehdi Totonchi
Majid Sadeghizadeh
spellingShingle Hadi Najafi
Mohadeseh Naseri
Javad Zahiri
Mehdi Totonchi
Majid Sadeghizadeh
Identification of the Molecular Events Involved in the Development of Prefrontal Cortex Through the Analysis of RNA-Seq Data From BrainSpan
ASN Neuro
author_facet Hadi Najafi
Mohadeseh Naseri
Javad Zahiri
Mehdi Totonchi
Majid Sadeghizadeh
author_sort Hadi Najafi
title Identification of the Molecular Events Involved in the Development of Prefrontal Cortex Through the Analysis of RNA-Seq Data From BrainSpan
title_short Identification of the Molecular Events Involved in the Development of Prefrontal Cortex Through the Analysis of RNA-Seq Data From BrainSpan
title_full Identification of the Molecular Events Involved in the Development of Prefrontal Cortex Through the Analysis of RNA-Seq Data From BrainSpan
title_fullStr Identification of the Molecular Events Involved in the Development of Prefrontal Cortex Through the Analysis of RNA-Seq Data From BrainSpan
title_full_unstemmed Identification of the Molecular Events Involved in the Development of Prefrontal Cortex Through the Analysis of RNA-Seq Data From BrainSpan
title_sort identification of the molecular events involved in the development of prefrontal cortex through the analysis of rna-seq data from brainspan
publisher SAGE Publishing
series ASN Neuro
issn 1759-0914
publishDate 2019-06-01
description Human brain development is a complex process that follows sequential orchestration of gene expression, begins at conceptual stages, and continues into adulthood. Altered profile of gene expression drives many cellular and molecular events required for development. Here, the molecular events during development of human prefrontal cortex (PFC) (as an important executive part of the brain) were investigated. First, the RNA-sequencing data of BrainSpan were used to obtain differentially expressed genes between each two developmental stages and then, the relevant biological processes and signaling pathways were deduced by gene set enrichment analysis. In addition, the changes in transcriptome landscape of PFC during development were analyzed and the potential biological processes underlie the changes were found. Comparison of the four regions of PFC based on their biological processes showed that additional to common biological processes and signaling pathways, each PFC region had its own molecular characteristics, conforming their previously reported functional roles in brain physiology. The most heterogeneity in transcriptome between the PFC regions was observed at the time of birth which was concurrent with the activity of some region-specific regulatory systems such as DNA methylation, transcription regulation, RNA splicing, and presence of different transcription factors and microRNAs. In conclusion, this study used bioinformatics to present a comprehensive molecular overview on PFC development which may explain the etiology of brain neuropsychiatric disorders originated from malfunctioning of PFC.
url https://doi.org/10.1177/1759091419854627
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