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三个鼠类白血病病毒整合区域位于 c-myb 上游的 100kb 内,通过 DNA 环化靠近基因的 5'调控区。

Three murine leukemia virus integration regions within 100 kilobases upstream of c-myb are proximal to the 5' regulatory region of the gene through DNA looping.

机构信息

Laboratory of Cellular Oncology, Center for Cancer Research, National Cancer Institute, Bethesda, Maryland, USA.

出版信息

J Virol. 2012 Oct;86(19):10524-32. doi: 10.1128/JVI.01077-12. Epub 2012 Jul 18.

Abstract

Retroviruses integrated into genomic DNA participate in long-range gene activation from as far away as several hundred kilobases. Hypotheses have been put forth to account for these phenomena, but data have not been provided to support a physical mechanism that explains long-range activation. In murine leukemia virus-induced myeloid leukemia in mice, integrated proviruses have been found upstream of c-myb in three regions, named Mml1, Mml2, and Mml3 (25, 50, and 70 kb upstream, respectively). The transcription factor c-Myb is an oncogene whose dysregulation and/or mutation can lead to human leukemia. We hypothesized that the murine c-myb upstream region contains regulatory elements accessed by the retrovirus. To identify regulatory sites in the murine c-myb upstream region, we looked by chromatin immunoprecipitation with microarray technology (ChIP-on-chip) for histone modifications implicating gene activation in normal cells. H3K4me3, H3K4me1, and H3K9/14ac were enriched at Mml1 and/or Mml2 in the myeloblastic cell line M1, which expresses c-myb. The enrichment of all of these histone marks decreased with differentiation-induced downregulation of the gene in M1 cells but increased and spread in tumor cells containing integrated provirus. Importantly, using chromosome conformation capture (3C)-quantitative PCR assays, interactions between the 5' region, including the promoter and all Mml sites (Mml1, Mml2, and Mml3), were detected due to DNA looping in M1 cells and tumor cells with provirus in Mml1, Mml2, or Mml3. Therefore, our study provides a new mechanism of retrovirus insertional mutagenesis whereby spatial chromatin organization allows distally located provirus, with its own enhancer elements, to access the 5' regulatory region of the gene.

摘要

逆转录病毒整合到基因组 DNA 中,参与从数百千碱基对远的地方进行长距离基因激活。已经提出了一些假设来解释这些现象,但没有提供数据来支持解释长距离激活的物理机制。在小鼠白血病病毒诱导的小鼠髓样白血病中,已在三个区域(分别命名为 Mml1、Mml2 和 Mml3,位于上游 25、50 和 70 kb)上游发现整合的前病毒位于 c-myb 上游。转录因子 c-Myb 是一种癌基因,其失调和/或突变可导致人类白血病。我们假设小鼠 c-myb 上游区域包含受逆转录病毒访问的调节元件。为了鉴定小鼠 c-myb 上游区域的调节位点,我们通过微阵列技术(ChIP-on-chip)进行染色质免疫沉淀,寻找在正常细胞中涉及基因激活的组蛋白修饰。在表达 c-myb 的髓样细胞系 M1 中,H3K4me3、H3K4me1 和 H3K9/14ac 在 Mml1 和/或 Mml2 处富集。随着 M1 细胞中基因的分化诱导下调,所有这些组蛋白标记的富集减少,但在含有整合前病毒的肿瘤细胞中增加并扩散。重要的是,使用染色体构象捕获(3C)-定量 PCR 测定,由于 DNA 环化,在 M1 细胞和含有前病毒的肿瘤细胞中,检测到包括启动子和所有 Mml 位点(Mml1、Mml2 和 Mml3)在内的 5'区域之间的相互作用。因此,我们的研究提供了一种新的逆转录病毒插入诱变机制,即空间染色质组织允许位于远处的前病毒及其自身的增强子元件,访问基因的 5'调节区。

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