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首页> 外文期刊>British Journal of Haematology >A 4-gene expression score associated with high levels of Wilms Tumor-1 (WT1) expression is an adverse prognostic factor in acute myeloid leukaemia
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A 4-gene expression score associated with high levels of Wilms Tumor-1 (WT1) expression is an adverse prognostic factor in acute myeloid leukaemia

机译:与高水平的Wilms Tumor-1(WT1)表达相关的4基因表达评分是急性髓细胞白血病的不良预后因素

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摘要

Wilms Tumor-1 (WT1) expression level is implicated in the prognosis of acute myeloid leukaemia (AML). We hypothesized that a gene expression profile associated with WT1 expression levels might be a good surrogate marker. We identified high WT1 gene sets by comparing the gene expression profiles in the highest and lowest quartiles of WT1 expression in two large AML studies. Two high WT1 gene sets were found to be highly correlated in terms of the altered genes and expression profiles. We identified a 17-probe set signature of the high WT1 set as the optimal prognostic predictor in the first AML set, and showed that it was able to predict prognosis in the second AML series after adjustment for European LeukaemiaNet genetic groups. The gene signature also proved to be of prognostic value in a third AML series of 163 samples assessed by RNA sequencing, demonstrating its cross-platform consistency. This led us to derive a 4-gene expression score, which faithfully predicted adverse outcome. In conclusion, a short gene signature associated with high WT1 expression levels and the resultant 4-gene expression score were found to be predictive of adverse prognosis in AML. This study provides new clues to the molecular pathways underlying high WT1 states in leukaemia.
机译:Wilms Tumor-1(WT1)表达水平与急性髓细胞性白血病(AML)的预后有关。我们假设与WT1表达水平相关的基因表达谱可能是很好的替代标记。通过比较两个大型AML研究中WT1表达的最高和最低四分位数的基因表达谱,我们确定了WT1高基因集。发现两个高WT1基因组在改变的基因和表达谱方面高度相关。我们确定了高WT1集的17个探针集特征作为第一个AML集的最佳预后预测指标,并显示在调整了欧洲LeukaemiaNet基因组后,它能够预测第二个AML系列的预后。该基因签名在通过RNA测序评估的163个样本的第三个AML系列中也被证明具有预后价值,证明了其跨平台一致性。这导致我们得出一个4基因表达得分,该得分忠实地预测了不良结果。总之,发现与WT1高表达水平相关的短基因签名和由此产生的4基因表达评分可预测AML不良预后。这项研究为白血病中高WT1状态的分子途径提供了新线索。

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