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首页> 外文期刊>Oncogene >A previously unrecognized promoter of LMO2 forms part of a transcriptional regulatory circuit mediating LMO2 expression in a subset of T-acute lymphoblastic leukaemia patients
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A previously unrecognized promoter of LMO2 forms part of a transcriptional regulatory circuit mediating LMO2 expression in a subset of T-acute lymphoblastic leukaemia patients

机译:先前无法识别的LMO2启动子形成了转录调控电路的一部分,该电路介导T急性淋巴细胞白血病患者亚群中的LMO2表达。

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The T-cell oncogene Lim-only 2 (LMO2) critically influences both normal and malignant haematopoiesis. LMO2 is not normally expressed in T cells, yet ectopic expression is seen in the majority of T-acute lymphoblastic leukaemia (T-ALL) patients with specific translocations involving LMO2 in only a subset of these patients. Ectopic lmo2 expression in thymocytes of transgenic mice causes T-ALL, and retroviral vector integration into the LMO2 locus was implicated in the development of clonal T-cell disease in patients undergoing gene therapy. Using array-based chromatin immunoprecipitation, we now demonstrate that in contrast to B-acute lymphoblastic leukaemia, human T-ALL samples largely use promoter elements with little influence from distal enhancers. Active LMO2 promoter elements in T-ALL included a previously unrecognized third promoter, which we demonstrate to be active in cell lines, primary T-ALL patients and transgenic mice. The ETS factors ERG and FLI1 previously implicated in lmo2-dependent mouse models of T-ALL bind to the novel LMO2 promoter in human T-ALL samples, while in return LMO2 binds to blood stem/progenitor enhancers in the FLI1 and ERG gene loci. Moreover, LMO2, ERG and FLI1 all regulate the +1 enhancer of HHEX/PRH, which was recently implicated as a key mediator of early progenitor expansion in LMO2-driven T-ALL. Our data therefore suggest that a self-sustaining triad of LMO2/ERG/FLI1 stabilizes the expression of important mediators of the leukaemic phenotype such as HHEX/PRH.
机译:T细胞癌基因仅Lim 2(LMO2)会严重影响正常和恶性造血功能。 LMO2通常不会在T细胞中表达,但是在大多数特异涉及LMO2易位的T型急性淋巴细胞白血病(T-ALL)患者中,异位表达仅见于这些患者中的一部分。转基因小鼠胸腺细胞中异位lmo2表达引起T-ALL,逆转录病毒载体整合入LMO2基因座与基因治疗患者克隆性T细胞疾病的发展有关。使用基于阵列的染色质免疫沉淀,我们现在证明,与B急性淋巴细胞白血病相比,人T-ALL样品大量使用启动子元件,而不受远端增强子的影响。 T-ALL中的活跃LMO2启动子元件包括一个以前无法识别的第三启动子,我们证明了它在细胞系,原发性T-ALL患者和转基因小鼠中具有活性。 ETS因子ERG和FLI1先前牵涉到Tmoll依赖lmo2的小鼠模型中,与人T-ALL样品中的新型LMO2启动子结合,而LMO2则与FLI1和ERG基因位点的血干/祖细胞增强子结合。此外,LMO2,ERG和FLI1均调节HHEX / PRH的+1增强子,最近被认为是LMO2驱动的T-ALL早期祖细胞扩增的关键介体。因此,我们的数据表明,LMO2 / ERG / FLI1的自我维持三联体可稳定白血病表型的重要介体(如HHEX / PRH)的表达。

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