Hardwick Joyce, Rodriguez-Hernaez Javier, Gambi Giovanni, Venters Bryan J, Guo Yan, Li Liqi, Love Paul E, Copeland Neal G, Jenkins Nancy A, Papaioannou Dimitrios, Aifantis Iannis, Tsirigos Aristotelis, Ivan Mircea, Davé Utpal P
Division of Hematology/Oncology, Indiana University School of Medicine, Indianapolis, Indiana, USA; Department of Medicine, R.L. Roudebush Indianapolis VA Medical Center, Indianapolis, Indiana, USA.
Division of Precision Medicine, New York University Genome Center, New York, New York, USA.
J Biol Chem. 2025 Mar;301(3):108233. doi: 10.1016/j.jbc.2025.108233. Epub 2025 Jan 27.
The Hhex gene encodes a transcription factor that is important for both embryonic and post-natal development, especially of hematopoietic tissues. Hhex is one of the most common sites of retroviral integration in mouse models. We found the most common integrations in AKXD (recombinant inbred strains) T-ALLs occur 57-61kb 3' of Hhex and activate Hhex gene expression. The genomic region of murine leukemia virus (MLV) integrations has features of a developmental stage-specific cis regulatory element (CRE), as evidenced by ATAC-seq in murine progenitor cells and high H3K27 acetylation at the syntenic CRE in human hematopoietic cell lines. With ChIP-exonuclease, we describe occupancy of LIM domain binding protein 1 (LDB1), the constitutive partner of the LIM Only-2 (LMO2), GATA1, and TAL1 transcription factors at GATA sites and at a composite GATA-E box within the CRE. With virtual 4C analysis, we observed looping between this +65kb CRE and the proximal intron one enhancer of HHEX in primary human ETP-ALLs and in normal progenitor cells. Our results show that retroviral integrations at intergenic sites can mark and take advantage of CREs. Specifically, in the case of HHEX activation, this newly described +65kb CRE is co-opted in the pathogenesis of ETP-ALL by the LMO2/LDB1 complex.
Hhex基因编码一种转录因子,对胚胎发育和出生后发育都很重要,尤其是对造血组织。Hhex是小鼠模型中逆转录病毒整合最常见的位点之一。我们发现,在AKXD(重组近交系)T-ALL中,最常见的整合发生在Hhex基因3'端57-61kb处,并激活Hhex基因表达。小鼠白血病病毒(MLV)整合的基因组区域具有发育阶段特异性顺式调控元件(CRE)的特征,小鼠祖细胞中的ATAC-seq以及人类造血细胞系中同线性CRE处的高H3K27乙酰化证明了这一点。通过染色质免疫沉淀外切酶,我们描述了LIM结构域结合蛋白1(LDB1)的占据情况,LDB1是仅含LIM结构域蛋白2(LMO2)、GATA1和TAL1转录因子在CRE内GATA位点和复合GATA-E盒处的组成型伙伴。通过虚拟4C分析,我们在原发性人类ETP-ALL和正常祖细胞中观察到该+65kb CRE与HHEX近端内含子1增强子之间的环化。我们的结果表明,基因间位点的逆转录病毒整合可以标记并利用CRE。具体而言,在HHEX激活的情况下,这种新描述的+65kb CRE在ETP-ALL的发病机制中被LMO2/LDB1复合物所利用。