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Cell Rep. 2013 Nov 27;5(4):886-94. doi: 10.1016/j.celrep.2013.09.040. Epub 2013 Oct 31.
2
Bromo- and extraterminal domain chromatin regulators serve as cofactors for murine leukemia virus integration.溴结构域和末端外结构域染色质调节剂可作为小鼠白血病病毒整合的辅助因子。
J Virol. 2013 Dec;87(23):12721-36. doi: 10.1128/JVI.01942-13. Epub 2013 Sep 18.
3
The C-terminal domain of Brd2 is important for chromatin interaction and regulation of transcription and alternative splicing.Brd2 蛋白的 C 末端结构域对于染色质相互作用以及转录和选择性剪接的调控非常重要。
Mol Biol Cell. 2013 Nov;24(22):3557-68. doi: 10.1091/mbc.E13-06-0303. Epub 2013 Sep 18.
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Lentiviral hematopoietic stem cell gene therapy benefits metachromatic leukodystrophy.慢病毒造血干细胞基因治疗有益于脑苷脂沉积病。
Science. 2013 Aug 23;341(6148):1233158. doi: 10.1126/science.1233158. Epub 2013 Jul 11.
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Lentiviral hematopoietic stem cell gene therapy in patients with Wiskott-Aldrich syndrome.慢病毒造血干细胞基因治疗 Wiskott-Aldrich 综合征患者。
Science. 2013 Aug 23;341(6148):1233151. doi: 10.1126/science.1233151. Epub 2013 Jul 11.
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BET proteins promote efficient murine leukemia virus integration at transcription start sites.BET 蛋白促进了高效的鼠白血病病毒整合到转录起始位点。
Proc Natl Acad Sci U S A. 2013 Jul 16;110(29):12036-41. doi: 10.1073/pnas.1307157110. Epub 2013 Jul 1.
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Structural basis for high-affinity binding of LEDGF PWWP to mononucleosomes.高亲和力结合 LEDGF PWWP 到单核小体的结构基础。
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Bromodomain-containing protein 4 (BRD4) regulates RNA polymerase II serine 2 phosphorylation in human CD4+ T cells.溴结构域蛋白 4(BRD4)调节人 CD4+T 细胞中 RNA 聚合酶 II 丝氨酸 2 的磷酸化。
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Gammaretroviral integration into nucleosomal target DNA in vivo.γ 逆转录病毒在体内整合到核小体靶 DNA 中。
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10
Mapping and analysis of chromatin state dynamics in nine human cell types.绘制和分析九种人类细胞类型中的染色质状态动态。
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增强子是鼠白血病病毒载体整合的主要靶点。

Enhancers are major targets for murine leukemia virus vector integration.

机构信息

Laboratory of Host Defenses, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland, USA.

出版信息

J Virol. 2014 Apr;88(8):4504-13. doi: 10.1128/JVI.00011-14. Epub 2014 Feb 5.

DOI:10.1128/JVI.00011-14
PMID:24501411
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3993722/
Abstract

UNLABELLED

Retroviral vectors have been used in successful gene therapies. However, in some patients, insertional mutagenesis led to leukemia or myelodysplasia. Both the strong promoter/enhancer elements in the long terminal repeats (LTRs) of murine leukemia virus (MLV)-based vectors and the vector-specific integration site preferences played an important role in these adverse clinical events. MLV integration is known to prefer regions in or near transcription start sites (TSS). Recently, BET family proteins were shown to be the major cellular proteins responsible for targeting MLV integration. Although MLV integration sites are significantly enriched at TSS, only a small fraction of the MLV integration sites (<15%) occur in this region. To resolve this apparent discrepancy, we created a high-resolution genome-wide integration map of more than one million integration sites from CD34(+) hematopoietic stem cells transduced with a clinically relevant MLV-based vector. The integration sites form ∼60,000 tight clusters. These clusters comprise ∼1.9% of the genome. The vast majority (87%) of the integration sites are located within histone H3K4me1 islands, a hallmark of enhancers. The majority of these clusters also have H3K27ac histone modifications, which mark active enhancers. The enhancers of some oncogenes, including LMO2, are highly preferred targets for integration without in vivo selection.

IMPORTANCE

We show that active enhancer regions are the major targets for MLV integration; this means that MLV preferentially integrates in regions that are favorable for viral gene expression in a variety of cell types. The results provide insights for MLV integration target site selection and also explain the high risk of insertional mutagenesis that is associated with gene therapy trials using MLV vectors.

摘要

未加标签

逆转录病毒载体已成功应用于基因治疗。然而,在一些患者中,插入突变导致白血病或骨髓增生异常。基于鼠白血病病毒(MLV)的载体中长末端重复(LTR)中的强启动子/增强子元件以及载体特异性整合位点偏好都在这些不良临床事件中发挥了重要作用。已知 MLV 整合偏爱转录起始位点(TSS)内或附近的区域。最近,BET 家族蛋白被证明是负责 MLV 整合靶向的主要细胞蛋白。尽管 MLV 整合位点在 TSS 处明显富集,但只有一小部分 MLV 整合位点(<15%)发生在此区域。为了解决这一明显差异,我们创建了一个超过一百万个整合位点的高分辨率全基因组整合图谱,这些整合位点来自用临床相关的 MLV 为基础的载体转导的 CD34+造血干细胞。整合位点形成了大约 60000 个紧密的簇。这些簇占基因组的约 1.9%。绝大多数(87%)的整合位点位于组蛋白 H3K4me1 岛上,这是增强子的标志。这些簇中的大多数也具有 H3K27ac 组蛋白修饰,这标志着活跃的增强子。一些癌基因的增强子,包括 LMO2,是整合的高度首选靶点,而无需体内选择。

重要性

我们表明,活跃的增强子区域是 MLV 整合的主要靶标;这意味着 MLV 优先整合在各种细胞类型中有利于病毒基因表达的区域。这些结果为 MLV 整合靶位选择提供了深入了解,并解释了与使用 MLV 载体的基因治疗试验相关的高插入突变风险。