Orphanides G, Maxwell A
Department of Biochemistry, University of Leicester, UK.
Nucleic Acids Res. 1994 May 11;22(9):1567-75. doi: 10.1093/nar/22.9.1567.
We have used the technique of hydroxyl radical footprinting to probe the complex between DNA gyrase and a 198 bp DNA fragment containing the preferred gyrase cleavage site from plasmid pBR322. We find that gyrase protects 128 bp from the hydroxyl radical with the central 13 bp (adjacent to the gyrase cleavage site) being most strongly protected. Flanking the central region are arms showing periodic protection from the reagent suggesting a helical repeat of 10.6 bp, consistent with the DNA being wrapped upon the enzyme surface. The presence of 5'-adenylyl-beta,gamma-imidodiphosphate or a quinolone drug causes alteration of the protection pattern consistent with a conformational change in the complex involving one arm of the wrapped DNA. The significance of these results for the mechanism of DNA supercoiling by gyrase is discussed.
我们运用羟基自由基足迹技术,探究了DNA促旋酶与一段198bp的DNA片段之间的复合物,该片段包含来自质粒pBR322的优选促旋酶切割位点。我们发现,促旋酶保护128bp免受羟基自由基的攻击,其中央的13bp(与促旋酶切割位点相邻)受到的保护最为强烈。中央区域两侧是呈现出对该试剂周期性保护的臂,这表明螺旋重复为10.6bp,与DNA缠绕在酶表面的情况相符。5'-腺苷酰-β,γ-亚氨基二磷酸或喹诺酮类药物的存在会导致保护模式发生改变,这与复合物中涉及缠绕DNA的一条臂的构象变化一致。讨论了这些结果对于促旋酶进行DNA超螺旋化机制的意义。