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Visualization of Repair of Double-Strand Breaks in the Bacteriophage T7 Genome without Normal DNA Replication

机译:没有正常DNA复制的噬菌体T7基因组中双链断裂修复的可视化。

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摘要

An in vitro system based on extracts of Escherichia coli infected with bacteriophage T7 is able to repair double-strand breaks in a T7 genome with efficiencies of 20% or more. To achieve this high repair efficiency it is necessary that the reaction mixtures contain molecules of donor DNA that bracket the double-strand break. Gaps as long as 1,600 nucleotides are repaired almost as efficiently as simple double-strand breaks. DNA synthesis was measured while repair was taking place. It was found that the amount of DNA synthesis associated with repair of a double-strand break was below the level of detection possible with this system. Furthermore, repair efficiencies were the same with or without normal levels of T7 DNA polymerase. However, the repair required the 5′→3′ exonuclease encoded by T7 gene 6. The high efficiency of DNA repair allowed visualization of the repaired product after in vitro repair, thereby assuring that the repair took place in vitro rather than during an in vivo growth step after packaging.
机译:基于感染了噬菌体T7的大肠杆菌提取物的体外系统能够以20%或更高的效率修复T7基因组中的双链断裂。为了实现这种高修复效率,必须使反应混合物包含带有双链断裂的供体DNA分子。长达1600个核苷酸的缺口几乎可以像简单的双链断裂一样有效地修复。在修复发生时测量DNA合成。发现与双链断裂修复相关的DNA合成量低于该系统可能的检测水平。此外,在有或没有正常水平的T7 DNA聚合酶的情况下,修复效率是相同的。但是,修复需要T7基因6编码的5'→3'核酸外切酶。DNA修复的高效率允许在体外修复后可视化修复后的产物,从而确保修复在体外进行,而不是在体内进行包装后的生长步骤。

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