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Analysis of PBase Binding Profile Indicates an Insertion Target Selection Mechanism Dependent on TTAA But Not Transcriptional Activity

机译:PBase绑定配置文件的分析表明插入目标选择机制取决于TTAA但不是转录活性

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摘要

Transposons and retroviruses are important pathogenic agents and tools for mutagenesis and transgenesis. Insertion target selection is a key feature for a given transposon or retrovirus. The piggyBac (PB) transposon is highly active in mice and human cells, which has a much better genome-wide distribution compared to the retrovirus and P-element. However, the underlying reason is not clear. Utilizing a tagged functional PB transposase (PBase), we were able to conduct genome-wide profiling for PBase binding sites in the mouse genome. We have shown that PBase binding mainly depends on the distribution of the tetranucleotide TTAA, which is not affected by the presence of PB DNA. Furthermore, PBase binding is negatively influenced by the methylation of CG sites in the genome. Analysis of a large collection of PB insertions in mice has revealed an insertion profile similar to the PBase binding profile. Interestingly, this profile is not correlated with transcriptional active genes in the genome or transcriptionally active regions within a transcriptional unit. This differs from what has been previously shown for P-element and retroviruses insertions. Our study provides an explanation for PB's genome-wide insertion distribution and also suggests that PB target selection relies on a new mechanism independent of active transcription and open chromatin structure.
机译:转座子和逆转录病毒是诱变和转基因的重要病原体和工具。插入目标的选择是给定转座子或逆转录病毒的关键特征。 piggyBac(PB)转座子在小鼠和人类细胞中具有很高的活性,与逆转录病毒和P元素相比,其在全基因组范围内的分布要好得多。但是,根本原因尚不清楚。利用标记的功能性PB转座酶(PBase),我们能够对小鼠基因组中的PBase结合位点进行全基因组分析。我们已经表明,PBase结合主要取决于四核苷酸TTAA的分布,不受PB DNA的存在的影响。此外,PBase结合受到基因组中CG位点甲基化的负面影响。对小鼠中大量PB插入的分析表明,其插入概况类似于PBase结合概况。有趣的是,该谱与基因组中的转录活性基因或转录单位内的转录活性区域不相关。这与先前显示的针对P元素和逆转录病毒的插入不同。我们的研究为PB的全基因组插入分布提供了解释,并且还表明PB靶标的选择依赖于独立于活性转录和开放染色质结构的新机制。

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