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Effects of Adeno-Associated Virus DNA Hairpin Structure on Recombination

机译:腺相关病毒DNA发夹结构对重组的影响

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摘要

Hairpin DNA ends are evolutionarily conserved intermediates in DNA recombination. The hairpin structures present on the ends of the adeno-associated virus (AAV) genome are substrates for recombination that give rise to persistent circular and concatemeric DNA episomes through intramolecular and intermolecular recombination, respectively. We have developed circularization-dependent and orientation-specific self-complementary AAV (scAAV) vectors as a reporter system to examine recombination events involving distinct hairpin structures, i.e., closed versus open hairpins. The results suggest that intramolecular recombination (circularization) is far more efficient than intermolecular recombination (concatemerization). Among all possible combinations of terminal repeats (TRs) involved in intermolecular recombination, the closed-closed TR structures are twice as efficient as the open-open TR substrates for recombination. In addition, both intramolecular recombination and intermolecular recombination exhibit the common dependency on specific DNA polymerases and topoisomerases. The circularization-dependent and orientation-specific scAAV vectors can serve as an efficient and controlled system for the delivery of DNA structures that mimic mammalian recombination intermediates and should be useful in assaying recombination in different experimental settings as well as elucidating the molecular mechanism of recombinant AAV genome persistence.
机译:发夹DNA末端是DNA重组中进化上保守的中间体。腺相关病毒(AAV)基因组末端存在的发夹结构是重组底物,可通过分子内和分子间重组分别产生持久的环状和串联的DNA附加体。我们已经开发了依赖于环化和方向特异性的自我互补AAV(scAAV)载体作为报告系统,以研究涉及不同发夹结构(即闭合与开放发夹)的重组事件。结果表明,分子内重组(环化)比分子间重组(串联)更有效。在分子间重组中涉及的末端重复序列(TR)的所有可能组合中,封闭的TR结构的效率是开放TR底物重组的两倍。另外,分子内重组和分子间重组均表现出对特定DNA聚合酶和拓扑异构酶的共同依赖性。环化依赖性和方向特异性的scAAV载体可作为有效和可控制的系统,用于传递模拟哺乳动物重组中间体的DNA结构,并应用于测定不同实验环境中的重组以及阐明重组AAV的分子机制基因组持久性。

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