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HOXA9 与激活的 JAK/STAT 信号协同作用驱动白血病发生。

HOXA9 Cooperates with Activated JAK/STAT Signaling to Drive Leukemia Development.

机构信息

KU Leuven, Center for Human Genetics, Leuven, Belgium.

VIB, Center for Cancer Biology, Leuven, Belgium.

出版信息

Cancer Discov. 2018 May;8(5):616-631. doi: 10.1158/2159-8290.CD-17-0583. Epub 2018 Mar 1.

Abstract

Leukemia is caused by the accumulation of multiple genomic lesions in hematopoietic precursor cells. However, how these events cooperate during oncogenic transformation remains poorly understood. We studied the cooperation between activated JAK3/STAT5 signaling and HOXA9 overexpression, two events identified as significantly co-occurring in T-cell acute lymphoblastic leukemia. Expression of mutant JAK3 and HOXA9 led to a rapid development of leukemia originating from multipotent or lymphoid-committed progenitors, with a significant decrease in disease latency compared with JAK3 or HOXA9 alone. Integrated RNA sequencing, chromatin immunoprecipitation sequencing, and Assay for Transposase-Accessible Chromatin using sequencing (ATAC-seq) revealed that STAT5 and HOXA9 have co-occupancy across the genome, resulting in enhanced STAT5 transcriptional activity and ectopic activation of FOS/JUN (AP1). Our data suggest that oncogenic transcription factors such as HOXA9 provide a fertile ground for specific signaling pathways to thrive, explaining why JAK/STAT pathway mutations accumulate in HOXA9-expressing cells. The mechanism of oncogene cooperation in cancer development remains poorly characterized. In this study, we model the cooperation between activated JAK/STAT signaling and ectopic HOXA9 expression during T-cell leukemia development. We identify a direct cooperation between STAT5 and HOXA9 at the transcriptional level and identify PIM1 kinase as a possible drug target in mutant JAK/STAT/HOXA9-positive leukemia cases. .

摘要

白血病是由造血前体细胞中多种基因组病变的积累引起的。然而,这些事件在致癌转化过程中是如何合作的仍知之甚少。我们研究了激活的 JAK3/STAT5 信号和 HOXA9 过表达之间的合作,这两个事件在 T 细胞急性淋巴细胞白血病中被确定为显著共同发生的事件。表达突变的 JAK3 和 HOXA9 导致多能或淋巴定向祖细胞起源的白血病迅速发展,与单独表达 JAK3 或 HOXA9 相比,疾病潜伏期显著缩短。整合的 RNA 测序、染色质免疫沉淀测序和转座酶可及染色质测序 (ATAC-seq) 显示,STAT5 和 HOXA9 在整个基因组中共占,导致 STAT5 转录活性增强和 FOS/JUN (AP1) 的异位激活。我们的数据表明,HOXA9 等致癌转录因子为特定信号通路的繁荣提供了肥沃的土壤,这解释了为什么 JAK/STAT 通路突变会在表达 HOXA9 的细胞中积累。癌症发展中致癌基因合作的机制仍知之甚少。在这项研究中,我们模拟了激活的 JAK/STAT 信号和 T 细胞白血病发育过程中异位 HOXA9 表达之间的合作。我们在转录水平上确定了 STAT5 和 HOXA9 之间的直接合作,并确定 PIM1 激酶可能是突变 JAK/STAT/HOXA9 阳性白血病病例中的一个潜在药物靶点。

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