Sandin Peter, Stengel Gudrun, Ljungdahl Thomas, Börjesson Karl, Macao Bertil, Wilhelmsson L Marcus
Department of Chemical and Biological Engineering/Physical Chemistry, Chalmers University of Technology, S-41296 Gothenburg, Sweden.
Nucleic Acids Res. 2009 Jul;37(12):3924-33. doi: 10.1093/nar/gkp266. Epub 2009 Apr 28.
Studies of the mechanisms by which DNA polymerases select the correct nucleotide frequently employ fluorescently labeled DNA to monitor conformational rearrangements of the polymerase-DNA complex in response to incoming nucleotides. For this purpose, fluorescent base analogs play an increasingly important role because they interfere less with the DNA-protein interaction than do tethered fluorophores. Here we report the incorporation of the 5'-triphosphates of two exceptionally bright cytosine analogs, 1,3-diaza-2-oxo-phenothiazine (tC) and its oxo-homolog, 1,3-diaza-2-oxo-phenoxazine (tC(O)), into DNA by the Klenow fragment. Both nucleotide analogs are polymerized with slightly higher efficiency opposite guanine than cytosine triphosphate and are shown to bind with nanomolar affinity to the DNA polymerase active site, according to fluorescence anisotropy measurements. Using this method, we perform competitive binding experiments and show that they can be used to determine the dissociation constant of any given natural or unnatural nucleotide. The results demonstrate that the active site of the Klenow fragment is flexible enough to tolerate base pairs that are size-expanded in the major groove. In addition, the possibility to enzymatically polymerize a fluorescent nucleotide with high efficiency complements the tool box of biophysical probes available to study DNA replication.
对DNA聚合酶选择正确核苷酸机制的研究,经常使用荧光标记的DNA来监测聚合酶-DNA复合物响应进入核苷酸时的构象重排。为此,荧光碱基类似物发挥着越来越重要的作用,因为它们比连接的荧光团对DNA-蛋白质相互作用的干扰更小。在此,我们报告了Klenow片段将两种异常明亮的胞嘧啶类似物1,3-二氮杂-2-氧代吩噻嗪(tC)及其氧代同系物1,3-二氮杂-2-氧代吩恶嗪(tC(O))的5'-三磷酸掺入DNA的情况。根据荧光各向异性测量,这两种核苷酸类似物与鸟嘌呤配对时的聚合效率略高于与三磷酸胞嘧啶配对时,并且显示出与DNA聚合酶活性位点具有纳摩尔亲和力。使用这种方法,我们进行了竞争性结合实验,并表明它们可用于确定任何给定天然或非天然核苷酸的解离常数。结果表明,Klenow片段的活性位点具有足够的灵活性,能够容忍在大沟中尺寸扩大的碱基对。此外,高效酶促聚合荧光核苷酸的可能性补充了可用于研究DNA复制的生物物理探针工具箱。