Tamulaitis Gintautas, Zaremba Mindaugas, Szczepanowski Roman H, Bochtler Matthias, Siksnys Virginijus
Institute of Biotechnology, Graiciuno 8, LT-02241, Vilnius, Lithuania.
Nucleic Acids Res. 2007;35(14):4792-9. doi: 10.1093/nar/gkm513. Epub 2007 Jul 7.
Many DNA modification and repair enzymes require access to DNA bases and therefore flip nucleotides. Restriction endonucleases (REases) hydrolyze the phosphodiester backbone within or in the vicinity of the target recognition site and do not require base extrusion for the sequence readout and catalysis. Therefore, the observation of extrahelical nucleotides in a co-crystal of REase Ecl18kI with the cognate sequence, CCNGG, was unexpected. It turned out that Ecl18kI reads directly only the CCGG sequence and skips the unspecified N nucleotides, flipping them out from the helix. Sequence and structure conservation predict nucleotide flipping also for the complexes of PspGI and EcoRII with their target DNAs (/CCWGG), but data in solution are limited and indirect. Here, we demonstrate that Ecl18kI, the C-terminal domain of EcoRII (EcoRII-C) and PspGI enhance the fluorescence of 2-aminopurines (2-AP) placed at the centers of their recognition sequences. The fluorescence increase is largest for PspGI, intermediate for EcoRII-C and smallest for Ecl18kI, probably reflecting the differences in the hydrophobicity of the binding pockets within the protein. Omitting divalent metal cations and mutation of the binding pocket tryptophan to alanine strongly increase the 2-AP signal in the Ecl18kI-DNA complex. Together, our data provide the first direct evidence that Ecl18kI, EcoRII-C and PspGI flip nucleotides in solution.
许多DNA修饰和修复酶需要接触DNA碱基,因此会翻转核苷酸。限制性内切核酸酶(REases)在靶标识别位点内或其附近水解磷酸二酯主链,并且在序列读取和催化过程中不需要碱基挤出。因此,在REase Ecl18kI与同源序列CCNGG的共晶体中观察到额外螺旋核苷酸是出乎意料的。结果表明,Ecl18kI仅直接读取CCGG序列并跳过未指定的N核苷酸,将它们从螺旋中翻转出来。序列和结构保守性预测PspGI和EcoRII与其靶标DNA(/CCWGG)的复合物也会发生核苷酸翻转,但溶液中的数据有限且间接。在这里,我们证明Ecl18kI、EcoRII的C末端结构域(EcoRII-C)和PspGI增强了位于其识别序列中心的2-氨基嘌呤(2-AP)的荧光。PspGI的荧光增加最大,EcoRII-C居中,Ecl18kI最小,这可能反映了蛋白质内结合口袋疏水性的差异。省略二价金属阳离子以及将结合口袋中的色氨酸突变为丙氨酸会强烈增加Ecl18kI-DNA复合物中的2-AP信号。总之,我们的数据提供了第一个直接证据,证明Ecl18kI、EcoRII-C和PspGI在溶液中翻转核苷酸。