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Characterization of a set of tumor suppressor microRNAs in T cell acute lymphoblastic leukemia

机译:T细胞急性淋巴细胞白血病中一组抑癌微RNA的表征

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摘要

The posttranscriptional control of gene expression by microRNAs (miRNAs) is highly redundant, and compensatory effects limit the consequences of the inactivation of individual miRNAs. This implies that only a few miRNAs can function as effective tumor suppressors. It is also the basis of our strategy to define functionally relevant miRNA target genes that are not under redundant control by other miRNAs. We identified a functionally interconnected group of miRNAs that exhibited a reduced abundance in leukemia cells from patients with T cell acute lymphoblastic leukemia (T-ALL). To pinpoint relevant target genes, we applied a machine learning approach to eliminate genes that were subject to redundant miRNA-mediated control and to identify those genes that were exclusively targeted by tumor-suppressive miRNAs. This strategy revealed the convergence of a small group of tumor suppressor miRNAs on the Myb oncogene, as well as their effects on HBP1, which encodes a transcription factor. The expression of both genes was increased in T-ALL patient samples, and each gene promoted the progression of T-ALL in mice. Hence, our systematic analysis of tumor suppressor miRNA action identified a widespread mechanism of oncogene activation in T-ALL.
机译:microRNA(miRNA)的基因表达的转录后控制是高度冗余的,并且补偿作用限制了单个miRNA失活的后果。这意味着只有少数的miRNA可以起到有效的抑癌作用。这也是我们定义不受其他miRNA冗余控制的功能相关miRNA靶基因的策略的基础。我们确定了一组功能互连的miRNA,它们在T细胞急性淋巴细胞白血病(T-ALL)患者的白血病细胞中显示出降低的丰度。为了查明相关的靶基因,我们应用了机器学习方法来消除受冗余miRNA介导的控制的基因,并鉴定那些被肿瘤抑制性miRNA专门靶向的基因。该策略揭示了在Myb癌基因上有一小群肿瘤抑制miRNA的趋同,以及它们对编码转录因子的HBP1的作用。在T-ALL患者样品中,这两个基因的表达均增加,并且每个基因都促进了小鼠中T-ALL的进程。因此,我们对肿瘤抑制物miRNA作用的系统分析确定了T-ALL中癌基因激活的广泛机制。

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