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Aberrant activity of NKL homeobox gene NKX3-2 in a T-ALL subset

机译:T-ALL子集中NKL同源盒基因NKX3-2的异常活性

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摘要

T-cell acute lymphoblastic leukemia (T-ALL) is a hematopoietic malignancy originating from T-cell progenitors in which differentiation is blocked at early stages. Physiological expression of specific NKL homeobox genes obeys a hematopoietic NKL-code implicated in the process of lymphopoiesis while in differentiated T-cells these genes are silenced. We propose that this developmental expression pattern underlies the observation that NKL homeobox genes are the most ubiquitous group of transcription factors deregulated in T-ALL, including TLX1, TLX3, NKX2-5 and NKX3-1. Here, we describe a novel member of the NKL homeobox gene subclass, NKX3-2 (BAPX1), which is aberrantly activated in 18% of pediatric T-ALL patients analyzed while being normally expressed in developing spleen. Identification of NKX3-2 expression in T-ALL cell line CCRF-CEM qualified these cells to model its deregulation and function in a leukemic context. Genomic and chromosomal analyses demonstrated normal configuration of the NKX3-2 locus at chromosome 4p15, thus excluding cytogenetic dysregulation. Comparative expression profiling analysis of NKX3-2 patient data revealed deregulated activity of BMP- and MAPK-signalling. These candidate pathways were experimentally confirmed to mediate aberrant NKX3-2 expression. We also show that homeobox gene SIX6, plus MIR17HG and GATA3 are downstream targets of NKX3-2 and plausibly contribute to the pathogenesis of this malignancy by suppressing T-cell differentiation. Finally, NKL homeobox gene NKX2-5 was activated by NKX3-2 in CCRF-CEM and by FOXG1 in PEER, representing mutually inhibitory activators of this translocated oncogene. Together, our findings reveal a novel oncogenic NKL homeobox gene subclass member which is aberrantly expressed in a large subset of T-ALL patients and participates in a deregulated gene network likely to arise in developing spleen.
机译:T细胞急性淋巴细胞白血病(T-ALL)是起源于T细胞祖细胞的造血系统恶性肿瘤,在早期分化受阻。特定的NKL同源盒基因的生理表达遵循与淋巴细胞生成过程有关的造血NKL码,而在分化的T细胞中这些基因被沉默。我们建议这种发展表达模式的基础上观察到NKL同源盒基因是T-ALL中最普遍存在的转录因子组,包括TLX1,TLX3,NKX2-5和NKX3-1。在这里,我们描述了NKL同源盒基因亚类NKX3-2(BAPX1)的一个新成员,该成员在18%的儿科T-ALL患者中被异常激活,而通常在发育中的脾脏中表达。鉴定T-ALL细胞系CCRF-CEM中NKX3-2表达的能力使这些细胞能够在白血病背景下模拟其失调和功能。基因组和染色体分析表明,NKX3-2基因座在染色体4p15处具有正常构型,因此排除了细胞遗传异常。 NKX3-2患者数据的比较表达谱分析表明,BMP和MAPK信号转导活性降低。实验上证实了这些候选途径介导异常的NKX3-2表达。我们还表明,同源盒基因SIX6,加上MIR17HG和GATA3是NKX3-2的下游靶标,并可能通过抑制T细胞分化来促进这种恶性肿瘤的发病。最后,NKL同源盒基因NKX2-5被CCRF-CEM中的NKX3-2和PEER中的FOXG1激活,代表了该易位癌基因的相互抑制激活物。在一起,我们的发现揭示了一种新型的致癌性NKL同源盒基因亚类成员,该成员在大量的T-ALL患者中异常表达,并参与脾脏发育中可能出现的失控基因网络。

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