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Programmed genome rearrangements in Oxytricha produce transcriptionally active extrachromosomal circular DNA

机译:Oxytricha中程序化的基因组重排产生转录活性的染色体外环状DNA

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摘要

Extrachromosomal circular DNA (eccDNA) is both a driver of eukaryotic genome instability and a product of programmed genome rearrangements, but its extent had not been surveyed in Oxytricha, a ciliate with elaborate DNA elimination and translocation during development. Here, we captured rearrangement-specific circular DNA molecules across the genome to gain insight into its processes of programmed genome rearrangement. We recovered thousands of circularly excised Tc1/mariner-type transposable elements and high confidence non-repetitive germline-limited loci. We verified their bona fide circular topology using circular DNA deep-sequencing, 2D gel electrophoresis and inverse polymerase chain reaction. In contrast to the precise circular excision of transposable elements, we report widespread heterogeneity in the circular excision of non-repetitive germline-limited loci. We also demonstrate that circular DNAs are transcribed in Oxytricha, producing rearrangement-specific long non-coding RNAs. The programmed formation of thousands of eccDNA molecules makes Oxytricha a model system for studying nucleic acid topology. It also suggests involvement of eccDNA in programmed genome rearrangement.
机译:染色体外环状DNA(eccDNA)既是真核基因组不稳定性的驱动力,又是程序化的基因组重排的产物,但尚未在纤毛虫Oxytricha中调查其程度,该纤毛虫在发育过程中进行了精心的DNA消除和转运。在这里,我们捕获了整个基因组中特定于重排的环状DNA分子,以深入了解其程序化的基因组重排过程。我们回收了成千上万个圆形切除的Tc1 / mariner型转座因子和高可信度非重复种系限制基因座。我们使用环状DNA深度测序,二维凝胶电泳和反向聚合酶链反应验证了它们的真实环状拓扑。与转座因子的精确环状切除相反,我们报道了非重复种系限制基因座的环状切除中广泛的异质性。我们还证明了在Oxytricha中转录了环状DNA,产生了重排特异性长的非编码RNA。数千个eccDNA分子的程序形成使Oxytricha成为研究核酸拓扑结构的模型系统。它还暗示了eccDNA参与程序化的基因组重排。

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