Nonin S, Jiang F, Patel D J
Cellular Biochemistry & Biophysics Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10021, USA.
J Mol Biol. 1997 May 2;268(2):359-74. doi: 10.1006/jmbi.1997.0986.
We report on the dynamics of base-pair opening in the ATP-binding asymmetric internal loop and flanking base-pairs of the AMP-RNA aptamer complex by monitoring the exchange characteristics of the extremely well resolved imino protons in the NMR spectrum of the complex. The kinetics of imino proton exchange as a function of basic pH or added ammonia catalyst are used to measure the apparent base-pair dissociation constants and lifetimes of Watson-Crick and mismatched base-pairs, as well as the solvent accessibility of the unpaired imino protons in the complex. The exchange characteristics of the imino protons identify the existence of four additional hydrogen bonds stabilizing the conformation of the asymmetric ATP-binding internal loop that were not detected by NOEs and coupling constants alone, but are readily accommodated in the previously reported solution structure of the AMP-RNA aptamer complex published from our laboratory. The hydrogen exchange kinetics of the non-Watson-Crick pairs in the asymmetric internal loop of the AMP-RNA aptamer complex have been characterized and yield apparent dissociation constants (alphaKd) that range from 10(-2) to 10(-7). Surprisingly, three of these alphaKd values are amongst the lowest measured for all base-pairs in the AMP-RNA aptamer complex. Comparative studies of hydrogen exchange of the imino protons in the free RNA aptamer and the AMP-RNA aptamer complex establish that complexation stabilizes not only the bases within the ATP-binding asymmetric internal loop, but also the flanking stem base-pairs (two pairs on either side) of the binding site. We also outline some preliminary results related to the exchange properties of a sugar 2'-hydroxyl proton of a guanosine residue involved in a novel hydrogen bond that has been shown to contribute to the immobilization of the bound AMP by the RNA aptamer, and whose resonance is narrow and downfield shifted in the spectrum.
我们通过监测复合物核磁共振谱中分辨率极高的亚氨基质子的交换特性,报道了AMP - RNA适配体复合物中ATP结合不对称内环及侧翼碱基对的碱基对打开动力学。利用亚氨基质子交换动力学作为碱性pH或添加氨催化剂的函数,来测量沃森 - 克里克碱基对和错配碱基对的表观碱基对解离常数和寿命,以及复合物中未配对亚氨基质子的溶剂可及性。亚氨基质子的交换特性确定了另外四个氢键的存在,这些氢键稳定了不对称ATP结合内环构象,单独的核Overhauser效应(NOE)和耦合常数未检测到这些氢键,但它们很容易容纳在我们实验室先前报道的AMP - RNA适配体复合物的溶液结构中。已对AMP - RNA适配体复合物不对称内环中非沃森 - 克里克碱基对的氢交换动力学进行了表征,得到的表观解离常数(αKd)范围为10^(-2)至10^(-7)。令人惊讶的是这些αKd值中的三个是AMP - RNA适配体复合物中所有碱基对测量值中最低的。对游离RNA适配体和AMP - RNA适配体复合物中亚氨基质子氢交换的比较研究表明,复合物形成不仅稳定了ATP结合不对称内环内的碱基以及结合位点侧翼茎碱基对(两侧各两对)。我们还概述了一些与鸟苷残基的糖2'-羟基质子交换特性相关的初步结果,该质子参与了一个新的氢键,已证明该氢键有助于RNA适配体固定结合的AMP,并且其共振在谱图中较窄且向低场移动。