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Detection of a Distinctive Genomic Signature in Rhabdoid Glioblastoma A Rare Disease Entity Identified by Whole Exome Sequencing and Whole Transcriptome Sequencing

机译:通过全外显子组测序和全转录组测序鉴定的横纹肌胶质母细胞瘤中的独特基因组特征的检测

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摘要

We analyzed the genome of a rhabdoid glioblastoma (R-GBM) tumor, a very rare variant of GBM. A surgical specimen of R-GBM from a 20-year-old woman was analyzed using whole exome sequencing (WES), whole transcriptome sequencing (WTS), single nucleotide polymorphism array, and array comparative genomic hybridization. The status of gene expression in R-GBM tissue was compared with that of normal brain tissue and conventional GBM tumor tissue. We identified 23 somatic non-synonymous small nucleotide variants with WES. We identified the BRAF V600E mutation and possible functional changes in the mutated genes, ISL1 and NDRG2. Copy number alteration analysis revealed gains of chromosomes 3, 7, and 9. We found loss of heterozygosity and focal homozygous deletion on 9q21, which includes CDKN2A and CDKN2B. In addition, WTS revealed that CDK6, MET, EZH2, EGFR, and NOTCH1, which are located on chromosomes 7 and 9, were over-expressed, whereas CDKN2A/2B were minimally expressed. Fusion gene analysis showed 14 candidate genes that may be functionally involved in R-GBM, including TWIST2, and UPK3BL. The BRAF V600E mutation, CDKN2A/2B deletion, and EGFR/MET copy number gain were observed. These simultaneous alterations are very rarely found in GBM. Moreover, the NDRG2 mutation was first identified in this study as it has never been reported in GBM. We observed a unique genomic signature in R-GBM compared to conventional GBM, which may provide insight regarding R-GBM as a distinct disease entity among the larger group of GBMs.
机译:我们分析了横纹肌胶质母细胞瘤(R-GBM)肿瘤的基因组,这是GBM的一种非常罕见的变体。使用全外显子组测序(WES),全转录组测序(WTS),单核苷酸多态性阵列和阵列比较基因组杂交对来自20岁女性的R-GBM手术标本进行分析。将R-GBM组织中的基因表达状态与正常脑组织和常规GBM肿瘤组织中的基因表达状态进行了比较。我们用WES鉴定了23种体细胞非同义小核苷酸变异体。我们确定了BRAF V600E突变以及突变基因ISL1和NDRG2的可能功能改变。拷贝数变化分析揭示了3号,7号和9号染色体的获得。我们发现9q21杂合性缺失和病灶纯合缺失,其中包括CDKN2A和CDKN2B。此外,WTS揭示了位于7号和9号染色体上的CDK6,MET,EZH2,EGFR和NOTCH1被过度表达,而CDKN2A / 2B被最小表达。融合基因分析显示14个候选基因可能在功能上与R-GBM有关,包括TWIST2和UPK3BL。观察到BRAF V600E突变,CDKN2A / 2B缺失和EGFR / MET拷贝数增加。这些同时发生的更改在GBM中很少见。此外,本研究首次鉴定了 NDRG2 突变,因为它在GBM中从未被报道过。与传统GBM相比,我们观察到R-GBM具有独特的基因组特征,这可能提供有关R-GBM作为较大的GBM组中独特疾病实体的见解。

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