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首页> 外文期刊>Journal of neuro-oncology. >A cancer tissue-specific FAM72 expression profile defines a novel glioblastoma multiform (GBM) gene-mutation signature
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A cancer tissue-specific FAM72 expression profile defines a novel glioblastoma multiform (GBM) gene-mutation signature

机译:癌症组织特异性FAM72表达谱限定了一种新型胶质母细胞瘤多种胶质瘤(GBM)基因突变签名

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Introduction Glioblastoma multiform (GBM) is a neural stem cell (NSC)-derived malignant brain tumor with complex genetic alterations challenging clinical treatments. FAM72 is a NSC-specific protein comprised of four paralogous genes (FAM72 A-D) in the human genome, but its functional tumorigenic significance is unclear. Methods We conducted an in-depth expression and somatic mutation data analysis of FAM72 (A-D) in GBM using the comprehensive human clinical cancer study database cBioPortal [including The Cancer Genome Atlas (TCGA)]. Results We established a FAM72 transcription profile across TCGA correlated with the expression of the proliferative marker MKI67 and a tissue-specific gene-mutation signature represented by pivotal genes involved in driving the cell cycle. FAM72 paralogs are overexpressed in cancer cells, specifically correlating with the mitotic cell cycle genes ASPM, KIF14, KIF23, CENPE, CENPE, CEP55, SGO1, and BUB1, thereby contributing to centrosome and mitotic spindle formation. FAM72 expression correlation identifies a novel GBM-specific gene set (SCN9A, MXRA5, ADAM29, KDR, LRP1B, and PIK3C2G) in the de novo pathway of primary GBM predestined as viable targets for therapeutics. Conclusion Our newly identified primary GBM-specific gene-mutation signature, along with FAM72, could thus provide a new basis for prognostic biomarkers for diagnostics of GBM and could serve as potential therapeutic targets.
机译:引言胶质母细胞瘤多样性(GBM)是一种神经干细胞(NSC)的恶性脑肿瘤,具有复杂的遗传改变挑战临床治疗。 FAM72是一种NSC特异性蛋白质,其包含在人类基因组中的四个副潜级基因(FAM72 A-D),但其功能性致瘤性意义尚不清楚。方法采用综合人类临床癌症研究数据库CBIOPortal [包括癌症基因组地图集(​​TCGA)]对GBM进行FAM72(A-D)的深入表达和体细胞突变数据分析。结果我们在TCGA中建立了与增殖标记MKI67的表达相关的FAM72转录概况,以及由参与驱动细胞周期的枢轴基因表示的组织特异性基因突变签名。 FAM72副病剂在癌细胞中过表达,与有丝分裂细胞周期基因ASPM,KIF14,KIF23,CENPE,CENPE,CEP55,Sgo1和BUB1,以及促进了Centosome和有丝分裂纺锤体形成。 FAM72表达相关性鉴定了在初级GBM的DE Novo途径中识别新的GBM特异性基因集(SCN9A,MXAR5,ADAM29,KDR,LRP1B和PIK3C2G),其作为治疗剂的可行靶标。结论我们的新发现的原发性GBM特异性基因突变签名,以及FAM72可以为GBM诊断提供预后生物标志物提供新的基础,并且可以作为潜在的治疗目标。

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