Multi-Omics Analysis Reveals Novel Subtypes and Driver Genes in Glioblastoma

Glioblastoma is the most lethal malignant primary brain tumor; nevertheless, there remains a lack of accurate prognostic markers and drug targets. In this study, we analyzed 117 primary glioblastoma patients’ data that contained SNP, DNA copy, DNA methylation, mRNA expression, and clinical informati...

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Main Authors: Yang Yuan, Pan Qi, Wang Xiang, Liu Yanhui, Li Yu, Mao Qing
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-11-01
Series:Frontiers in Genetics
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fgene.2020.565341/full
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spelling doaj-15e7a81617e9461f9765813216794a2b2020-12-08T08:42:55ZengFrontiers Media S.A.Frontiers in Genetics1664-80212020-11-011110.3389/fgene.2020.565341565341Multi-Omics Analysis Reveals Novel Subtypes and Driver Genes in GlioblastomaYang Yuan0Pan Qi1Wang Xiang2Liu Yanhui3Li Yu4Mao Qing5Department of Neurosurgery, West China Hospital, Sichuan University, Chengdu, ChinaDepartment of Dermatology, Chongqing Traditional Chinese Medicine Hospital, Chongqing, ChinaDepartment of Neurosurgery, West China Hospital, Sichuan University, Chengdu, ChinaDepartment of Neurosurgery, West China Hospital, Sichuan University, Chengdu, ChinaDepartment of Anesthesia, West China Hospital, Sichuan University, Chengdu, ChinaDepartment of Neurosurgery, West China Hospital, Sichuan University, Chengdu, ChinaGlioblastoma is the most lethal malignant primary brain tumor; nevertheless, there remains a lack of accurate prognostic markers and drug targets. In this study, we analyzed 117 primary glioblastoma patients’ data that contained SNP, DNA copy, DNA methylation, mRNA expression, and clinical information. After the quality of control examination, we conducted the single nucleotide polymorphism (SNP) analysis, copy number variation (CNV) analysis, and infiltrated immune cells estimate. And moreover, by using the cluster of cluster analysis (CoCA) methods, we finally divided these GBM patients into two novel subtypes, HX-1 (Cluster 1) and HX-2 (Cluster 2), which could be co-characterized by 3 methylation variable positions [cg16957313(DUSP1), cg17783509(PHOX2B), cg23432345(HOXA7)] and 15 (PCDH1, CYP27B1, LPIN3, GPR32, BCL6, OR4Q3, MAGI3, SKIV2L, PCSK5, AKAP12, UBE3B, MAP4, TP53BP1, F5, RHOBTB1) gene mutations pattern. Compared to HX-1 subtype, the HX-2 subtype was identified with higher gene co-occurring events, tumor mutation burden (TBM), and poor median overall survival [231.5 days (HX-2) vs. 445 days (HX-1), P-value = 0.00053]. We believe that HX-1 and HX-2 subtypes may make sense as the potential prognostic biomarkers for patients with glioblastoma.https://www.frontiersin.org/articles/10.3389/fgene.2020.565341/fullmulti-omics analysiscopy number variationDNA methylationmRNA expressionglioblastoma
collection DOAJ
language English
format Article
sources DOAJ
author Yang Yuan
Pan Qi
Wang Xiang
Liu Yanhui
Li Yu
Mao Qing
spellingShingle Yang Yuan
Pan Qi
Wang Xiang
Liu Yanhui
Li Yu
Mao Qing
Multi-Omics Analysis Reveals Novel Subtypes and Driver Genes in Glioblastoma
Frontiers in Genetics
multi-omics analysis
copy number variation
DNA methylation
mRNA expression
glioblastoma
author_facet Yang Yuan
Pan Qi
Wang Xiang
Liu Yanhui
Li Yu
Mao Qing
author_sort Yang Yuan
title Multi-Omics Analysis Reveals Novel Subtypes and Driver Genes in Glioblastoma
title_short Multi-Omics Analysis Reveals Novel Subtypes and Driver Genes in Glioblastoma
title_full Multi-Omics Analysis Reveals Novel Subtypes and Driver Genes in Glioblastoma
title_fullStr Multi-Omics Analysis Reveals Novel Subtypes and Driver Genes in Glioblastoma
title_full_unstemmed Multi-Omics Analysis Reveals Novel Subtypes and Driver Genes in Glioblastoma
title_sort multi-omics analysis reveals novel subtypes and driver genes in glioblastoma
publisher Frontiers Media S.A.
series Frontiers in Genetics
issn 1664-8021
publishDate 2020-11-01
description Glioblastoma is the most lethal malignant primary brain tumor; nevertheless, there remains a lack of accurate prognostic markers and drug targets. In this study, we analyzed 117 primary glioblastoma patients’ data that contained SNP, DNA copy, DNA methylation, mRNA expression, and clinical information. After the quality of control examination, we conducted the single nucleotide polymorphism (SNP) analysis, copy number variation (CNV) analysis, and infiltrated immune cells estimate. And moreover, by using the cluster of cluster analysis (CoCA) methods, we finally divided these GBM patients into two novel subtypes, HX-1 (Cluster 1) and HX-2 (Cluster 2), which could be co-characterized by 3 methylation variable positions [cg16957313(DUSP1), cg17783509(PHOX2B), cg23432345(HOXA7)] and 15 (PCDH1, CYP27B1, LPIN3, GPR32, BCL6, OR4Q3, MAGI3, SKIV2L, PCSK5, AKAP12, UBE3B, MAP4, TP53BP1, F5, RHOBTB1) gene mutations pattern. Compared to HX-1 subtype, the HX-2 subtype was identified with higher gene co-occurring events, tumor mutation burden (TBM), and poor median overall survival [231.5 days (HX-2) vs. 445 days (HX-1), P-value = 0.00053]. We believe that HX-1 and HX-2 subtypes may make sense as the potential prognostic biomarkers for patients with glioblastoma.
topic multi-omics analysis
copy number variation
DNA methylation
mRNA expression
glioblastoma
url https://www.frontiersin.org/articles/10.3389/fgene.2020.565341/full
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