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Bias between the Left and Right Inverted Repeats during IS911 Targeted Insertion

机译:IS911定向插入过程中左右反向重复之间的偏差

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摘要

IS911 is a bacterial insertion sequence composed of two consecutive overlapping open reading frames (ORFs [orfA and orfB]) encoding the transposase (OrfAB) as well as a regulatory protein (OrfA). These ORFs are bordered by terminal left and right inverted repeats (IRL and IRR, respectively) with several differences in nucleotide sequence. IS911 transposition is asymmetric: each end is cleaved on one strand to generate a free 3′-OH, which is then used as the nucleophile in attacking the opposite insertion sequence (IS) end to generate a free IS circle. This will be inserted into a new target site. We show here that the ends exhibit functional differences which, in vivo, may favor the use of one compared to the other during transposition. Electromobility shift assays showed that a truncated form of the transposase [OrfAB(1-149)] exhibits higher affinity for IRR than for IRL. While there was no detectable difference in IR activities during the early steps of transposition, IRR was more efficient during the final insertion steps. We show here that the differential activities between the two IRs correlate with the different affinities of OrfAB(1-149) for the IRs during assembly of the nucleoprotein complexes leading to transposition. We conclude that the two inverted repeats are not equivalent during IS911 transposition and that this asymmetry may intervene to determine the ordered assembly of the different protein-DNA complexes involved in the reaction.
机译:IS911是一种细菌插入序列,由两个连续的重叠开放阅读框(ORF [orfA和orfB])组成,它们编码转座酶(OrfAB)和调节蛋白(OrfA)。这些ORFs的末端是左右颠倒的重复序列(分别为IRL和IRR),核苷酸序列存在一些差异。 IS911转座是不对称的:每个末端在一条链上裂解以生成游离的3'-OH,然后将其用作亲核试剂攻击相反的插入序列(IS)末端以生成游离的IS环。它将被插入到新的目标站点中。我们在这里显示末端表现出功能差异,在体内,在转座过程中,相比于另一种,它们可能更倾向于使用一种。电动迁移率分析表明,转座酶[OrfAB(1-149)]的截短形式对IRR的亲和力高于对IRL的亲和力。虽然在换位的早期步骤中IR活动没有可检测到的差异,但是IRR在最后的插入步骤中效率更高。我们在这里显示两个IR之间的差异活动与OrfAB(1-149)的IR的亲和力的不同亲和力相关的核蛋白复合体组装期间导致换位。我们得出的结论是,两个反向重复序列在IS911转座过程中不相等,并且这种不对称性可能会影响反应中涉及的不同蛋白质-DNA复合物的有序组装。

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