Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Nucleic Acids Res. 2013 Nov;41(20):9361-70. doi: 10.1093/nar/gkt694. Epub 2013 Aug 11.
DNAzymes are known to bind metal ions specifically to carry out catalytic functions. Despite many studies since DNAzymes were discovered nearly two decades ago, the metal-binding sites in DNAzymes are not fully understood. Herein, we adopt uranyl photocleavage to probe specific uranyl-binding sites in the 39E DNAzyme with catalytically relevant concentrations of uranyl. The results indicate that uranyl binds between T23 and C25 in the bulge loop, G11 and T12 in the stem loop of the enzyme strand, as well as between T2.4 and G3 close to the cleavage site in the substrate strand. Control experiments using two 39E DNAzyme mutants revealed a different cleavage pattern of the mutated region. Another DNAzyme, the 8-17 DNAzyme, which has a similar secondary structure but shows no activity in the presence of uranyl, indicated a different uranyl-dependent photocleavage as well. In addition, a close correlation between the concentration-dependent photocleavage and enzymatic activities is also demonstrated. Together, these experiments suggest that uranyl photocleavage has been successfully used to probe catalytically relevant uranyl-binding sites in the 39E DNAzyme. As uranyl is the cofactor of the 39E DNAzyme as well as the probe, specific uranyl binding has now been identified without disruption of the structure.
DNA 酶已知能够特异性地结合金属离子以执行催化功能。尽管自近二十年前发现 DNA 酶以来进行了许多研究,但 DNA 酶中的金属结合位点仍未完全了解。在此,我们采用铀酰光解来探测具有催化相关浓度铀酰的 39E DNA 酶中的特定铀酰结合位点。结果表明,铀酰结合在酶链的凸起环中的 T23 和 C25 之间、茎环中的 G11 和 T12 之间,以及靠近底物链切割位点的 T2.4 和 G3 之间。使用两个 39E DNA 酶突变体的对照实验揭示了突变区域的不同切割模式。另一种 DNA 酶,即 8-17 DNA 酶,具有相似的二级结构,但在存在铀酰的情况下没有活性,表明也存在不同的依赖铀酰的光解。此外,还证明了浓度依赖性光解与酶活性之间存在密切相关性。总之,这些实验表明,铀酰光解已成功用于探测 39E DNA 酶中具有催化相关性的铀酰结合位点。由于铀酰既是 39E DNA 酶的辅因子也是探针,因此在不破坏结构的情况下,现在已经确定了特定的铀酰结合。