White M F, Giraud-Panis M J, Pöhler J R, Lilley D M
CRC Nucleic Acid Structure Research Group, Department of Biochemistry, The University Dundee, UK.
J Mol Biol. 1997 Jun 27;269(5):647-64. doi: 10.1006/jmbi.1997.1097.
The junction-resolving enzymes are a class of nucleases that introduce paired cleavages into four-way DNA junctions. They are important in DNA recombination and repair, and are found throughout nature, from eubacteria and their bacteriophages through to higher eukaryotes and their viruses. These enzymes exhibit structure-selective binding to DNA junctions; although cleavage may be more or less sequence-dependent, binding affinity is purely related to the branched structure of the DNA. Binding and cleavage events can be separated for a number of the enzymes by mutagenesis, and mutant proteins that are defective in cleavage while retaining normal junction-selective binding have been isolated. Critical acidic residues have been identified in several resolving enzymes, suggesting a role in the coordination of metal ions that probably deliver the hydrolytic water molecule. The resolving enzymes all bind to junctions in dimeric form, and the subunits introduce independent cleavages within the lifetime of the enzyme-junction complex to ensure resolution of the four-way junction. In addition to recognising the structure of the junction, recent data from four different junction-resolving enzymes indicate that they also manipulate the global structure. In some cases this results in severe distortion of the folded structure of the junction. Understanding the recognition and manipulation of DNA structure by these enzymes is a fascinating challenge in molecular recognition.
连接点拆分酶是一类核酸酶,可在四链DNA连接点引入成对切割。它们在DNA重组和修复中很重要,在自然界中广泛存在,从真细菌及其噬菌体到高等真核生物及其病毒。这些酶对DNA连接点表现出结构选择性结合;虽然切割可能或多或少依赖于序列,但结合亲和力纯粹与DNA的分支结构有关。对于许多酶来说,通过诱变可以将结合和切割事件分开,并且已经分离出在切割方面有缺陷但保留正常连接点选择性结合的突变蛋白。在几种拆分酶中已经鉴定出关键的酸性残基,这表明它们在可能传递水解水分子的金属离子配位中起作用。拆分酶都以二聚体形式结合到连接点,并且亚基在酶-连接点复合物的寿命期间引入独立的切割,以确保四链连接点的拆分。除了识别连接点的结构外,来自四种不同连接点拆分酶的最新数据表明它们还能操纵整体结构。在某些情况下,这会导致连接点折叠结构的严重扭曲。了解这些酶对DNA结构的识别和操纵是分子识别中一个引人入胜的挑战。