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NKL 同源盒基因 HMX2 和 HMX3 的异常表达干扰急性髓系白血病细胞的分化。

Aberrant expression of NKL homeobox genes HMX2 and HMX3 interferes with cell differentiation in acute myeloid leukemia.

机构信息

Department of Human and Animal Cell Lines, Leibniz-Institute DSMZ-German Collection of Microorganisms and Cell Cultures, Braunschweig, Germany.

出版信息

PLoS One. 2020 Oct 13;15(10):e0240120. doi: 10.1371/journal.pone.0240120. eCollection 2020.

Abstract

The NKL-code describes normal expression patterns of NKL homeobox genes in hematopoiesis. Aberrant expression of NKL homeobox gene subclass members have been reported in several hematopoietic malignancies including acute myeloid leukemia (AML). Here, we analyzed the oncogenic role of the HMX-group of NKL homeobox genes in AML. Public expression profiling data-available for HMX1 and HMX2-indicate aberrant activity of HMX2 in circa 2% AML patients overall, rising to 31% in those with KMT2A/MLL rearrangements whereas HMX1 expression remains inconspicuous. AML cell lines EOL-1, MV4-11 and MOLM-13 expressed both, HMX2 and neighboring HMX3 genes, and harbored KMT2A aberrations, suggesting their potential functional association. Surprisingly, knockdown experiments in these cell lines demonstrated that KMT2A inhibited HMX2/3 which, in turn, did not regulate KMT2A expression. Furthermore, karyotyping and genomic profiling analysis excluded rearrangements of the HMX2/3 locus in these cell lines. However, comparative expression profiling and subsequent functional analyses revealed that IRF8, IL7- and WNT-signalling activated HMX2/3 expression while TNFa/NFkB- signalling proved inhibitory. Whole genome sequencing of EOL-1 identified two mutations in the regulatory upstream regions of HMX2/3 resulting in generation of a consensus ETS-site and transformation of a former NFkB-site into an SP1-site. Reporter-gene assays demonstrated that both mutations contributed to HMX2/3 activation, modifying ETS1/ELK1- and TNFalpha-mediated gene regulation. Moreover, DMSO-induced eosinophilic differentiation of EOL-1 cells coincided with HMX2/3 downregulation while knockdown of HMX2 induced cell differentiation, collectively supporting a fundamental role for these genes in myeloid differentiation arrest. Finally, target genes of HMX2/3 were identified in EOL-1 and included suppression of differentiation gene EPX, and activation of fusion gene FIP1L1-PDGFRA and receptor-encoding gene HTR7, both of which enhanced oncogenic ERK-signalling. Taken together, our study documents a leukemic role for deregulated NKL homeobox genes HMX2 and HMX3 in AML, revealing molecular mechanisms of myeloid differentiation arrest.

摘要

NKL 编码描述了 NKL 同源盒基因在造血中的正常表达模式。已经报道了 NKL 同源盒基因亚类成员在几种造血恶性肿瘤中的异常表达,包括急性髓系白血病(AML)。在这里,我们分析了 HMX 组 NKL 同源盒基因在 AML 中的致癌作用。可用于 HMX1 和 HMX2 的公共表达谱数据分析表明,HMX2 在总体约 2%的 AML 患者中存在异常活性,在具有 KMT2A/MLL 重排的患者中上升至 31%,而 HMX1 表达仍不明显。AML 细胞系 EOL-1、MV4-11 和 MOLM-13 均表达 HMX2 和相邻的 HMX3 基因,并存在 KMT2A 异常,表明它们具有潜在的功能关联。令人惊讶的是,这些细胞系中的敲低实验表明,KMT2A 抑制了 HMX2/3,而 HMX2/3 反过来又没有调节 KMT2A 的表达。此外,染色体核型分析和基因组谱分析排除了这些细胞系中 HMX2/3 基因座的重排。然而,比较表达谱分析和随后的功能分析表明,IRF8、IL7-和 WNT 信号激活了 HMX2/3 的表达,而 TNFa/NFkB 信号则具有抑制作用。EOL-1 的全基因组测序鉴定出 HMX2/3 调节上游区域的两个突变,导致生成一个共识的 ETS 位点,并将前 NFkB 位点转化为一个 SP1 位点。报告基因实验表明,这两个突变都有助于 HMX2/3 的激活,改变了 ETS1/ELK1 和 TNFalpha 介导的基因调控。此外,DMSO 诱导 EOL-1 细胞的嗜酸性分化与 HMX2/3 的下调同时发生,而 HMX2 的敲低诱导细胞分化,共同支持这些基因在髓样分化阻滞中的基本作用。最后,在 EOL-1 中鉴定了 HMX2/3 的靶基因,包括分化基因 EPX 的抑制和融合基因 FIP1L1-PDGFRA 和受体编码基因 HTR7 的激活,这两者都增强了致癌 ERK 信号。总之,我们的研究证明了失调的 NKL 同源盒基因 HMX2 和 HMX3 在 AML 中的白血病作用,揭示了髓样分化阻滞的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/302f/7553312/783b65cb5d46/pone.0240120.g001.jpg

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