Hansen M R, Simorre J P, Hanson P, Mokler V, Bellon L, Beigelman L, Pardi A
Department of Chemistry and Biochemistry, University of Colorado at Boulder, 80309-0215, USA.
RNA. 1999 Aug;5(8):1099-104. doi: 10.1017/s1355838299990738.
A novel metal-binding site has been identified in the hammerhead ribozyme by 31P NMR. The metal-binding site is associated with the A13 phosphate in the catalytic core of the hammerhead ribozyme and is distinct from any previously identified metal-binding sites. 31P NMR spectroscopy was used to measure the metal-binding affinity for this site and leads to an apparent dissociation constant of 250-570 microM at 25 degrees C for binding of a single Mg2+ ion. The NMR data also show evidence of a structural change at this site upon metal binding and these results are compared with previous data on metal-induced structural changes in the core of the hammerhead ribozyme. These NMR data were combined with the X-ray structure of the hammerhead ribozyme (Pley HW, Flaherty KM, McKay DB. 1994. Nature 372:68-74) to model RNA ligands involved in binding the metal at this A13 site. In this model, the A13 metal-binding site is structurally similar to the previously identified A(g) metal-binding site and illustrates the symmetrical nature of the tandem G x A base pairs in domain 2 of the hammerhead ribozyme. These results demonstrate that 31P NMR represents an important method for both identification and characterization of metal-binding sites in nucleic acids.
通过31P核磁共振已在锤头状核酶中鉴定出一个新的金属结合位点。该金属结合位点与锤头状核酶催化核心中的A13磷酸基团相关联,且不同于任何先前鉴定出的金属结合位点。利用31P核磁共振光谱法测量了该位点的金属结合亲和力,结果表明在25℃下单个Mg2+离子结合的表观解离常数为250 - 570微摩尔。核磁共振数据还显示了金属结合后该位点结构变化的证据,并将这些结果与先前关于金属诱导锤头状核酶核心结构变化的数据进行了比较。这些核磁共振数据与锤头状核酶的X射线结构(Pley HW, Flaherty KM, McKay DB. 1994. Nature 372:68 - 74)相结合,以模拟在A13位点结合金属的RNA配体。在该模型中,A13金属结合位点在结构上类似于先前鉴定出的A(g)金属结合位点,并说明了锤头状核酶结构域2中串联G×A碱基对的对称性质。这些结果表明,31P核磁共振是鉴定和表征核酸中金属结合位点的重要方法。