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首页> 外文期刊>Nucleic Acids Research >RAG1 targeting in the genome is dominated by chromatin interactions mediated by the non-core regions of RAG1 and RAG2
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RAG1 targeting in the genome is dominated by chromatin interactions mediated by the non-core regions of RAG1 and RAG2

机译:在基因组中靶向的RAG1由染色质相互作用介导的RAG1和RAG2的非核心区域介导

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The RAG1/RAG2 endonuclease initiates V(D)J recombination at antigen receptor loci but also binds to thousands of places outside of these loci. RAG2 localizes directly to lysine 4 trimethylated histone 3 (H3K4me3) through a plant homeodomain (PHD) finger. The relative contribution of RAG2-dependent and RAG1-intrinsic mechanisms in determining RAG1 binding patterns is not known. Through analysis of deep RAG1 ChIP-seq data, we provide a quantitative description of the forces underlying genome-wide targeting of RAG1. Surprisingly, sequence-specific DNA binding contributes minimally to RAG1 targeting outside of antigen receptor loci. Instead, RAG1 binding is driven by two distinct modes of interaction with chromatin: the first is driven by H3K4me3, promoter-focused and dependent on the RAG2 PHD, and the second is defined by H3K27Ac, enhancer-focused and dependent on 'non-core' portions of RAG1. Based on this and additional chromatin and genomic features, we formulated a predictive model of RAG1 targeting to the genome. RAG1 binding sites predicted by our model correlate well with observed patterns of RAG1-mediated breaks in human proB acute lymphoblastic leukemia. Overall, this study provides an integrative model for RAG1 genome-wide binding and off-target activity and reveals a novel role for the RAG1 non-core region in RAG1 targeting.
机译:RAG1 / RAG2内切核酸酶引发抗原受体基因座的V(d)J重组,但也结合了这些基因座外部的数千个地点。 RAG2通过植物同性恋(PHD)手指直接定位于赖氨酸4三甲基化的组蛋白3(H3K4ME3)。 RAG2依赖性和RAG1内在机制在确定RAG1结合模式时的相对贡献是不知道的。通过对深rag1芯片-seq数据的分析,我们提供了rag1基因组靶向潜在的力的定量描述。令人惊讶的是,序列特异性DNA结合促进靶向抗原受体基因座以外的RAG1。相反,RAG1结合由两种不同的与染色质的相互作用方式驱动:首先由H3K4ME3驱动,聚焦促进剂和依赖于RAG2验验,第二个是由H3K27AC,增强的聚焦和取决于“非核心的第二种'rag1的部分。基于这种和额外的染色质和基因组特征,我们配制了靶向基因组的RAG1的预测模型。我们的模型预测的RAG1结合位点与人毒性急性淋巴细胞白血病中的RAG1介导的破裂的观察模式相比好。总体而言,该研究为RAG1基因组结合和脱靶活动提供了一种综合模型,并揭示了RAG1靶向RAG1非核心区域的新颖作用。

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