Gamas P, Chandler M G, Prentki P, Galas D J
Centre de Recherche de Biochimie et Génétique Cellulaire du C.N.R.S. Toulouse, France.
J Mol Biol. 1987 May 20;195(2):261-72. doi: 10.1016/0022-2836(87)90648-6.
We report here that the ends of IS1 are bound and protected in vitro by the heterodimeric protein integration host factor (IHF). Under identical conditions, RNA polymerase binds to one of these ends (IRL) and protects a region that includes the sequences protected by IHF. Other potential sites within IS1, identified by their homology to the apparent consensus sequence, are not protected. Footprinting analysis of deletion derivatives of the ends demonstrates a correspondence between the ability of the end sequence to bind IHF and its ability to function as an end in transposition. Nonetheless, some transposition occurs in IHF- cells, indicating that IHF is not an essential component of the transposition apparatus. IHF also binds and protects four closely spaced regions within the major hot-spot for insertion of IS1 in the plasmid pBR322. This striking correlation of hot-spot and IHF-binding sites suggests a possible role for IHF in IS1 insertion specificity.
我们在此报告,在体外,IS1的末端被异源二聚体蛋白整合宿主因子(IHF)结合并保护。在相同条件下,RNA聚合酶结合到这些末端之一(IRL),并保护一个包含被IHF保护的序列的区域。通过与明显的共有序列的同源性鉴定出的IS1内的其他潜在位点未受到保护。对末端缺失衍生物的足迹分析表明,末端序列结合IHF的能力与其在转座中作为末端发挥功能的能力之间存在对应关系。尽管如此,在缺乏IHF的细胞中仍会发生一些转座,这表明IHF不是转座装置的必需成分。IHF还结合并保护质粒pBR322中IS1插入的主要热点内的四个紧密间隔的区域。热点与IHF结合位点之间的这种显著相关性表明IHF在IS1插入特异性中可能发挥作用。