Liu Yong, Sen Dipankar
Department of Molecular Biology and Biochemistry, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6.
J Mol Biol. 2008 Sep 12;381(4):845-59. doi: 10.1016/j.jmb.2008.06.036. Epub 2008 Jun 19.
The small RNA-cleaving 8-17 deoxyribozyme (DNAzyme) has been the subject of extensive mechanistic and structural investigation, including a number of recent single-molecule studies of its global folding. Little detailed insight exists, however, into this DNAzyme's active site; for instance, the identity of specific nucleotides that are proximal to or in contact with the scissile site in the substrate. Here, we report a systematic replacement of a number of bases within the magnesium-folded DNAzyme-substrate complex with thio- and halogen-substituted base analogues, which were then photochemically activated to generate contact cross-links within the complex. Mapping of the cross-links revealed a striking pattern of DNAzyme-substrate cross-links but an absence of significant intra-DNAzyme cross-links. Notably, the two nucleotides directly flanking the scissile phosphodiester cross-linked strongly with functionally important elements within the DNAzyme, the thymine of a G.T wobble base pair, a WCGR bulge loop, and a terminal AGC loop. Mutation of the wobble base pair to a G-C pair led to a significant folding instability of the DNAzyme-substrate complex. The cross-linking patterns obtained were used to generate a model for the DNAzyme's active site that had the substrate's scissile phosphodiester sandwiched between the DNAzyme's wobble thymine and its AGC and WCGR loops.
可切割小分子RNA的8-17脱氧核酶(DNAzyme)一直是广泛的机制和结构研究的对象,包括最近一些关于其整体折叠的单分子研究。然而,对于这种DNAzyme的活性位点,目前还缺乏详细的了解;例如,与底物中可切割位点相邻或接触的特定核苷酸的身份。在这里,我们报告了在镁折叠的DNAzyme-底物复合物中,用硫代和卤素取代的碱基类似物对多个碱基进行系统替换,然后通过光化学激活在复合物中产生接触交联。交联图谱揭示了DNAzyme-底物交联的显著模式,但没有明显的DNAzyme内部交联。值得注意的是,可切割磷酸二酯两侧的两个核苷酸与DNAzyme内功能重要的元件强烈交联,包括一个G.T摆动碱基对的胸腺嘧啶、一个WCGR凸起环和一个末端AGC环。将摆动碱基对突变为G-C对会导致DNAzyme-底物复合物的显著折叠不稳定性。所获得的交联模式被用于生成一个DNAzyme活性位点的模型,其中底物的可切割磷酸二酯夹在DNAzyme的摆动胸腺嘧啶与其AGC环和WCGR环之间。