Kovacheva Yana S, Tzokov Svetomir B, Murray Iain A, Grasby Jane A
Centre for Chemical Biology, Department of Chemistry, Krebs Institute, University of Sheffield, Sheffield S3 7HF, UK.
Nucleic Acids Res. 2004 Dec 1;32(21):6240-50. doi: 10.1093/nar/gkh957. Print 2004.
The VS ribozyme trans-cleavage substrate interacts with the catalytic RNA via tertiary interactions. To study the role of phosphate groups in the ribozyme-substrate interaction, 18 modified substrates were synthesized, where an epimeric phosphorothioate replaces one of the phosphate diester linkages. Sites in the stem-loop substrate where phosphorothioate substitution impaired reaction cluster in two regions. The first site is the scissile phosphate diester linkage and nucleotides downstream of this and the second site is within the loop region. The addition of manganese ions caused recovery of the rate of reaction for phosphorothioate substitutions between A621 and A622 and U631 and C632, suggesting that these two phosphate groups may serve as ligands for two metal ions. In contrast, significant manganese rescue was not observed for the scissile phosphate diester linkage implying that electrophilic catalysis by metal ions is unlikely to contribute to VS ribozyme catalysis. In addition, an increase in the reaction rate of the unmodified VS ribozyme was observed when a mixture of magnesium and manganese ions acted as the cofactor. One possible explanation for this effect is that the cleavage reaction of the VS ribozyme is rate limited by a metal dependent docking of the substrate on the ribozyme.
VS核酶反式切割底物通过三级相互作用与催化性RNA相互作用。为了研究磷酸基团在核酶-底物相互作用中的作用,合成了18种修饰底物,其中差向异构硫代磷酸酯取代了一个磷酸二酯键。茎环底物中硫代磷酸酯取代影响反应的位点集中在两个区域。第一个位点是可切割的磷酸二酯键及其下游的核苷酸,第二个位点在环区域内。添加锰离子可使A621与A622以及U631与C632之间硫代磷酸酯取代的反应速率恢复,这表明这两个磷酸基团可能作为两个金属离子的配体。相比之下,未观察到可切割磷酸二酯键有明显的锰离子挽救作用,这意味着金属离子的亲电催化不太可能有助于VS核酶的催化作用。此外,当镁离子和锰离子的混合物作为辅因子时,未修饰的VS核酶的反应速率有所增加。对此效应的一种可能解释是,VS核酶的切割反应受底物与核酶的金属依赖性对接的速率限制。