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Glycosyltransferase Gene Expression Profiles Classify Cancer Types and Propose Prognostic Subtypes

机译:糖基转移酶基因表达谱分类癌症类型并提出预后亚型

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Aberrant glycosylation in tumours stem from altered glycosyltransferase (GT) gene expression but can the expression profiles of these signature genes be used to classify cancer types and lead to cancer subtype discovery? The differential structural changes to cellular glycan structures are predominantly regulated by the expression patterns of GT genes and are a hallmark of neoplastic cell metamorphoses. We found that the expression of 210 GT genes taken from 1893 cancer patient samples in The Cancer Genome Atlas (TCGA) microarray data are able to classify six cancers; breast, ovarian, glioblastoma, kidney, colon and lung. The GT gene expression profiles are used to develop cancer classifiers and propose subtypes. The subclassification of breast cancer solid tumour samples illustrates the discovery of subgroups from GT genes that match well against basal-like and HER2-enriched subtypes and correlates to clinical, mutation and survival data. This cancer type glycosyltransferase gene signature finding provides foundational evidence for the centrality of glycosylation in cancer.
机译:肿瘤中的异常糖基化源于改变的糖基转移酶(GT)基因表达,但可以使用这些签名基因的表达谱来对癌症类型进行分类并导致癌症亚型发现?细胞聚糖结构的差异结构变化主要由GT基因的表达模式调节,并且是肿瘤细胞变质的标志。我们发现,从1893年癌症患者样品中取出的210gt基因的表达在癌症基因组地图集(​​TCGA)微阵列数据中能够分类六种癌症;乳腺癌,卵巢,胶质母细胞瘤,肾,结肠和肺。 GT基因表达谱用于发展癌症分类器并提出亚型。乳腺癌固体肿瘤样品的子分类说明了来自GT基因的亚组的发现,所述GT基因与基础样和HER2富集的亚型相匹配,并与临床,突变和存活数据相关。该癌型糖基转移酶基因签名寻找为癌症中糖基化的中心性提供了基础证据。

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