首页> 外文OA文献 >Transcriptional activation of prostate specific homeobox gene NKX3-1 in subsets of T-cell lymphoblastic leukemia (T-ALL).
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Transcriptional activation of prostate specific homeobox gene NKX3-1 in subsets of T-cell lymphoblastic leukemia (T-ALL).

机译:T细胞淋巴母细胞性白血病(T-ALL)子集中的前列腺特异性同源盒基因NKX3-1的转录激活。

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摘要

Homeobox genes encode transcription factors impacting key developmental processes including embryogenesis, organogenesis, and cell differentiation. Reflecting their tight transcriptional control, homeobox genes are often embedded in large non-coding, cis-regulatory regions, containing tissue specific elements. In T-cell acute lymphoblastic leukemia (T-ALL) homeobox genes are frequently deregulated by chromosomal aberrations, notably translocations adding T-cell specific activatory elements. NKX3-1 is a prostate specific homeobox gene activated in T-ALL patients expressing oncogenic TAL1 or displaying immature T-cell characteristics. After investigating regulation of NKX3-1 in primary cells and cell lines, we report its ectopic expression in T-ALL cells independent of chromosomal rearrangements. Using siRNAs and expression profiling, we exploited NKX3-1 positive T-ALL cell lines as tools to investigate aberrant activatory mechanisms. Our data confirmed NKX3-1 activation by TAL1/GATA3/LMO and identified LYL1 as an alternative activator in immature T-ALL cells devoid of GATA3. Moreover, we showed that NKX3-1 is directly activated by early T-cell homeodomain factor MSX2. These activators were regulated by MLL and/or by IL7-, BMP4- and IGF2-signalling. Finally, we demonstrated homeobox gene SIX6 as a direct leukemic target of NKX3-1 in T-ALL. In conclusion, we identified three major mechanisms of NKX3-1 regulation in T-ALL cell lines which are represented by activators TAL1, LYL1 and MSX2, corresponding to particular T-ALL subtypes described in patients. These results may contribute to the understanding of leukemic transcriptional networks underlying disturbed T-cell differentiation in T-ALL.
机译:同源盒基因编码影响关键发育过程的转录因子,这些过程包括胚胎发生,器官发生和细胞分化。为了反映其严格的转录控制,同源异型框基因通常嵌入大的非编码,顺式调节区域,其中包含组织特异性元件。在T细胞急性淋巴细胞白血病(T-ALL)中,同源异型盒基因经常受到染色体畸变的调节,尤其是易位,并添加了T细胞特异性激活因子。 NKX3-1是一种前列腺特异的同源盒基因,在表达致癌性TAL1或显示未成熟T细胞特征的T-ALL患者中被激活。在调查了NKX3-1在原代细胞和细胞系中的调控后,我们报告了它在T-ALL细胞中的异位表达,与染色体重排无关。使用siRNA和表达谱,我们利用NKX3-1阳性T-ALL细胞系作为研究异常激活机制的工具。我们的数据证实了TAL1 / GATA3 / LMO对NKX3-1的激活,并确定LYL1是不含GATA3的未成熟T-ALL细胞的替代激活剂。此外,我们表明NKX3-1被早期T细胞同源域因子MSX2直接激活。这些激活剂受MLL和/或IL7-,BMP4-和IGF2信号传导调节。最后,我们证明了同源盒基因SIX6作为T-ALL中NKX3-1的直接白血病靶标。总之,我们确定了T-ALL细胞系中NKX3-1调节的三种主要机制,这些机制由活化剂TAL1,LYL1和MSX2代表,与患者中描述的特定T-ALL亚型相对应。这些结果可能有助于理解T-ALL中T细胞分化受干扰的白血病转录网络。

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