J Biol Chem. 2014 Jul 25;289(30):20650-63. doi: 10.1074/jbc.M113.542381.
Group II intron ribozymes catalyze the cleavage of (and their reinsertion into) DNA and RNA targets using a Mg2(+)-dependent reaction. The target is cleaved 3' to the last nucleotide of intron binding site 1 (IBS1), one of three regions that form base pairs with the intron's exon binding sites (EBS1 to -3).We solved the NMR solution structure of the d3' hairpin of the Sc.ai5γ intron containing EBS1 in its 11-nucleotide loop in complex with the dIBS1 DNA 7-mer and compare it with the analogous RNA-RNA contact. The EBS1-dIBS1 helix is slightly flexible and non-symmetric. NMR data reveal two major groove binding sites for divalent metal ions at the EBS1-dIBS1 helix, and surface plasmon resonance experiments show that low concentrations of Mg2(+) considerably enhance the affinity of dIBS1 for EBS1. Our results indicate that identification of both RNA and DNA IBS1 targets, presentation of the scissile bond, and stabilization of the structure by metal ions are governed by the overall structure of EBS1-dIBS1 and the surrounding loop nucleotides but are irrespective of different EBS1-(d)IBS1 geometries and interstrand affinities.
II 组内含子核酶通过依赖 Mg2+的反应催化 DNA 和 RNA 靶标的切割(及其重新插入)。靶标在与内含子的外显子结合位点(EBS1 到 -3)形成碱基对的三个区域之一的内含子结合位点 1(IBS1)的最后一个核苷酸的 3' 处被切割。我们解决了含有 EBS1 的 11 个核苷酸环的 Sc.ai5γ 内含子的 d3' 发夹的 NMR 溶液结构,该发夹与 dIBS1 DNA 7 -mer 复合,并将其与类似的 RNA-RNA 接触进行比较。EBS1-dIBS1 螺旋略有灵活性和非对称性。NMR 数据显示在 EBS1-dIBS1 螺旋上有两个用于二价金属离子的主要沟结合位点,表面等离子体共振实验表明,低浓度的 Mg2+ 会大大提高 dIBS1 与 EBS1 的亲和力。我们的结果表明,RNA 和 DNA IBS1 靶标的识别、切割键的呈现以及结构的稳定性都由 EBS1-dIBS1 的整体结构和周围环核苷酸决定,但与不同的 EBS1-(d)IBS1 几何形状和链间亲和力无关。