Bouvier Marie, Ducos-Galand Magaly, Loot Céline, Bikard David, Mazel Didier
Institut Pasteur, Unité Plasticité du Génome Bactérien, CNRS URA 2171, Paris, France.
PLoS Genet. 2009 Sep;5(9):e1000632. doi: 10.1371/journal.pgen.1000632. Epub 2009 Sep 4.
We recently showed that cassette integration and deletion in integron platforms were occurring through unconventional site-specific recombination reactions involving only the bottom strand of attC sites. The lack of sequence conservation among attC sites led us to hypothesize that sequence-independent structural recognition determinants must exist within attC sites. The structural data obtained from a synaptic complex of the Vibrio cholerae integrase with the bottom strand of an attC site has shown the importance of extra helical bases (EHB) inside the stem-loop structure formed from the bottom strand. Here, we systematically determined the contribution of three structural elements common to all known single-stranded attC site recombination substrates (the EHBs, the unpaired central spacer (UCS), and the variable terminal structure (VTS)) to strand choice and recombination. Their roles have been evaluated in vivo in the attIxattC reaction context using the suicide conjugation assay we previously developed, but also in an attCxattC reaction using a deletion assay. Conjugation was used to deliver the attC sites in single-stranded form. Our results show that strand choice is primarily directed by the first EHB, but the presence of the two other EHBs also serves to increase this strand selection. We found that the structure of the central spacer is essential to achieve high level recombination of the bottom strand, suggesting a dual role for this structure in active site exclusion and for hindering the reverse reaction after the first strand exchange. Moreover, we have shown that the VTS has apparently no role in strand selectivity.
我们最近发现,整合子平台中的盒式整合和缺失是通过非常规的位点特异性重组反应发生的,该反应仅涉及attC位点的底部链。attC位点之间缺乏序列保守性,这使我们推测attC位点内必定存在与序列无关的结构识别决定因素。从霍乱弧菌整合酶与attC位点底部链的突触复合体获得的结构数据表明,由底部链形成的茎环结构内的额外螺旋碱基(EHB)很重要。在这里,我们系统地确定了所有已知单链attC位点重组底物共有的三个结构元件(EHBs、未配对的中央间隔区(UCS)和可变末端结构(VTS))对链选择和重组的贡献。它们的作用已在体内使用我们先前开发的自杀性接合试验在attIxattC反应背景下进行了评估,也在使用缺失试验的attCxattC反应中进行了评估。接合用于以单链形式传递attC位点。我们的结果表明,链选择主要由第一个EHB指导,但其他两个EHB的存在也有助于增加这种链选择。我们发现中央间隔区的结构对于实现底部链的高水平重组至关重要,这表明该结构在活性位点排除和阻碍第一次链交换后的逆向反应中具有双重作用。此外,我们已经表明VTS在链选择性方面显然没有作用。