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Chromosomal context and epigenetic mechanisms control the efficacy of genome editing by rare-cutting designer endonucleases

机译:染色体背景和表观遗传机制通过稀少的设计者核酸内切酶控制基因组编辑的功效

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摘要

The ability to specifically engineer the genome of living cells at precise locations using rare-cutting designer endonucleases has broad implications for biotechnology and medicine, particularly for functional genomics, transgenics and gene therapy. However, the potential impact of chromosomal context and epigenetics on designer endonuclease-mediated genome editing is poorly understood. To address this question, we conducted a comprehensive analysis on the efficacy of 37 endonucleases derived from the quintessential I-CreI meganuclease that were specifically designed to cleave 39 different genomic targets. The analysis revealed that the efficiency of targeted mutagenesis at a given chromosomal locus is predictive of that of homologous gene targeting. Consequently, a strong genome-wide correlation was apparent between the efficiency of targeted mutagenesis (≤0.1% to ∼6%) with that of homologous gene targeting (≤0.1% to ∼15%). In contrast, the efficiency of targeted mutagenesis or homologous gene targeting at a given chromosomal locus does not correlate with the activity of individual endonucleases on transiently transfected substrates. Finally, we demonstrate that chromatin accessibility modulates the efficacy of rare-cutting endonucleases, accounting for strong position effects. Thus, chromosomal context and epigenetic mechanisms may play a major role in the efficiency rare-cutting endonuclease-induced genome engineering.
机译:使用稀有切割的设计核酸内切酶在特定位置特异性工程化活细胞基因组的能力,对生物技术和医学,特别是对功能基因组学,转基因和基因治疗具有广泛的意义。然而,人们对染色体背景和表观遗传学对设计人员核酸内切酶介导的基因组编辑的潜在影响知之甚少。为了解决这个问题,我们对源自典型I-CreI宏核酸酶的37种核酸内切酶的功效进行了全面分析,这些酶专门设计用于切割39个不同的基因组靶标。分析显示,在给定的染色体位点进行定向诱变的效率可预测同源基因的定向。因此,在全基因组靶向诱变的效率(≤0.1%至〜6%)与同源基因靶向的效率(≤0.1%至〜15%)之间存在明显的全基因组相关性。相反,靶向诱变或同源基因靶向给定染色体基因座的效率与瞬时转染的底物上单个核酸内切酶的活性无关。最后,我们证明了染色质可及性调节了稀切核酸内切酶的功效,说明了强位置效应。因此,染色体背景和表观遗传机制可能在稀切核酸内切酶诱导的基因组工程效率中发挥重要作用。

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