IGBMC, Integrated Structural Biology Department, UMR7104 CNRS, U964 Inserm, Université de Strasbourg, 67400 Illkirch, France, Institut de Chimie de Strasbourg, Université de Strasbourg, UMR7177 CNRS, 67000 Strasbourg, France and Hôpitaux Universitaires de Strasbourg, 67000 Strasbourg, France.
Nucleic Acids Res. 2013 Sep;41(16):7815-27. doi: 10.1093/nar/gkt560. Epub 2013 Jun 26.
Type 2A DNA topoisomerases (Topo2A) remodel DNA topology during replication, transcription and chromosome segregation. These multisubunit enzymes catalyze the transport of a double-stranded DNA through a transient break formed in another duplex. The bacterial DNA gyrase, a target for broad-spectrum antibiotics, is the sole Topo2A enzyme able to introduce negative supercoils. We reveal here for the first time the architecture of the full-length Thermus thermophilus DNA gyrase alone and in a cleavage complex with a 155 bp DNA duplex in the presence of the antibiotic ciprofloxacin, using cryo-electron microscopy. The structural organization of the subunits of the full-length DNA gyrase points to a central role of the ATPase domain acting like a 'crossover trap' that may help to sequester the DNA positive crossover before strand passage. Our structural data unveil how DNA is asymmetrically wrapped around the gyrase-specific C-terminal β-pinwheel domains and guided to introduce negative supercoils through cooperativity between the ATPase and β-pinwheel domains. The overall conformation of the drug-induced DNA binding-cleavage complex also suggests that ciprofloxacin traps a DNA pre-transport conformation.
2A 型 DNA 拓扑异构酶(Topo2A)在复制、转录和染色体分离过程中重塑 DNA 拓扑结构。这些多亚基酶催化双链 DNA 通过另一个双链体中形成的瞬时断裂进行转运。细菌 DNA 回旋酶是广谱抗生素的靶点,是唯一能够引入负超螺旋的 Topo2A 酶。我们首次使用 cryo-electron microscopy 揭示了全长嗜热栖热菌 DNA 回旋酶在单独存在和与 155bp DNA 双链体在抗生素环丙沙星存在下的切割复合物中的结构。全长 DNA 回旋酶亚基的结构组织指出 ATP 酶结构域的核心作用,其作用类似于“交叉陷阱”,这可能有助于在链转移之前隔离 DNA 阳性交叉。我们的结构数据揭示了 DNA 如何不对称地缠绕在回旋酶特异性 C 末端β-桨轮结构域周围,并通过 ATP 酶和β-桨轮结构域之间的协同作用引导引入负超螺旋。药物诱导的 DNA 结合切割复合物的整体构象还表明,环丙沙星捕获了 DNA 预转运构象。