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Intra- and inter-molecular recombination of mitochondrial DNA after in vivo induction of multiple double-strand breaks

机译:体内诱导多个双链断裂后线粒体DNA的分子内和分子重组

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To investigate mtDNA recombination induced by multiple double strand breaks (DSBs) we used a mitochondria-targeted form of the ScaI restriction endonuclease to introduce DSBs in heteroplasmic mice and cells in which we were able to utilize haplotype differences to trace the origin of recombined molecules. ScaI cleaves multiple sites in each haplotype of the heteroplasmic mice (five in NZB and three in BALB mtDNA) and prolonged expression causes severe mtDNA depletion. After a short pulse of restriction enzyme expression followed by a long period of recovery, mitochondrial genomes with large deletions were detected by PCR. Curiously, we found that some ScaI sites were more commonly involved in recombined molecules than others. In intra-molecular recombination events, deletion breakpoints were close to or upstream of ScaI cleavage sites, confirming the recombinogenic character of DSBs in mtDNA. A region adjacent to the D-loop was preferentially involved in recombination of all molecules. Sequencing through NZB and BALB haplotype markers in recombined molecules enabled us to show that in addition to intra-molecular mtDNA recombination, rare inter-molecular mtDNA recombination events can also occur. This study underscores the role of DSBs in the generation of mtDNA rearrangements and supports the existence of recombination hotspots.
机译:为了研究由多个双链断裂(DSB)诱导的mtDNA重组,我们使用了线粒体靶向形式的ScaI限制性核酸内切酶将DSB引入异质小鼠和细胞中,在其中我们能够利用单倍型差异来追踪重组分子的起源。 ScaI切割异质性小鼠的每个单倍型中的多个位点(NZB中为五个,BALB mtDNA中为三个),长时间表达会导致严重的mtDNA消耗。在限制性内切酶表达短时脉冲后,经过长时间的恢复后,通过PCR检测到了缺失较大的线粒体基因组。奇怪的是,我们发现某些ScaI位点比其他分子更常参与重组分子。在分子内重组事件中,缺失断点接近或位于ScaI切割位点的上游,这证实了mtDNA中DSB的重组原性。与D-环相邻的区域优先参与所有分子的重组。通过重组分子中NZB和BALB单体型标记的测序使我们证明,除了分子内mtDNA重组外,还可能发生罕见的分子间mtDNA重组事件。这项研究强调了DSB在mtDNA重排产生中的作用,并支持重组热点的存在。

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