Institute for Genomics and Systems Biology, Department of Pathology, University of Chicago, IL 60637, USA.
Blood. 2013 Feb 7;121(6):975-83. doi: 10.1182/blood-2012-04-426965. Epub 2012 Dec 3.
Loss of chromosome 7 and del(7q) [-7/del(7q)] are recurring cytogenetic abnormalities in hematologic malignancies, including acute myeloid leukemia and therapy-related myeloid neoplasms, and associated with an adverse prognosis. Despite intensive effort by many laboratories, the putative myeloid tumor suppressor(s) on chromosome 7 has not yet been identified.We performed transcriptome sequencing and SNP array analysis on de novo and therapy-related myeloid neoplasms, half with -7/del(7q). We identified a 2.17-Mb commonly deleted segment on chromosome band 7q22.1 containing CUX1, a gene encoding a homeodomain-containing transcription factor. In 1 case, CUX1 was disrupted by a translocation, resulting in a loss-of-function RNA fusion transcript. CUX1 was the most significantly differentially expressed gene within the commonly deleted segment and was expressed at haploinsufficient levels in -7/del(7q) leukemias. Haploinsufficiency of the highly conserved ortholog, cut, led to hemocyte overgrowth and tumor formation in Drosophila melanogaster. Similarly, haploinsufficiency of CUX1 gave human hematopoietic cells a significant engraftment advantage on transplantation into immunodeficient mice. Within the RNA-sequencing data, we identified a CUX1-associated cell cycle transcriptional gene signature, suggesting that CUX1 exerts tumor suppressor activity by regulating proliferative genes. These data identify CUX1 as a conserved, haploinsufficient tumor suppressor frequently deleted in myeloid neoplasms.
7 号染色体缺失和 del(7q) [-7/del(7q)] 是血液恶性肿瘤(包括急性髓系白血病和治疗相关髓系肿瘤)中经常出现的细胞遗传学异常,与不良预后相关。尽管许多实验室都进行了深入研究,但尚未确定 7 号染色体上的潜在髓系肿瘤抑制基因。我们对新发和治疗相关髓系肿瘤进行了转录组测序和 SNP 阵列分析,其中一半存在 -7/del(7q)。我们鉴定了一条位于 7q22.1 染色体带的 2.17-Mb 常见缺失片段,其中包含编码含有同源结构域的转录因子的 CUX1 基因。在 1 例中,CUX1 被易位破坏,导致功能丧失的 RNA 融合转录本。在常见缺失片段中,CUX1 是差异表达最显著的基因,在 -7/del(7q) 白血病中表达为杂合不足水平。高度保守的同源物 cut 的杂合不足导致果蝇血细胞过度生长和肿瘤形成。同样,CUX1 的杂合不足赋予人类造血细胞在移植到免疫缺陷小鼠中显著的嵌合优势。在 RNA 测序数据中,我们鉴定了一个与 CUX1 相关的细胞周期转录基因特征,表明 CUX1 通过调节增殖基因发挥肿瘤抑制活性。这些数据表明 CUX1 是一种保守的、杂合不足的肿瘤抑制基因,在髓系肿瘤中经常缺失。