Latham Michael P, Zimmermann Grant R, Pardi Arthur
Department of Chemistry and Biochemistry, 215 UCB, University of Colorado, Boulder, Colorado 80309-0215, USA.
J Am Chem Soc. 2009 Apr 15;131(14):5052-3. doi: 10.1021/ja900695m.
The apparent on and off rate constants for binding of theophylline to its RNA aptamer in the absence of Mg(2+) were determined here by 2D (1)H-(1)H ZZ-exchange NMR spectroscopy. Analysis of the buildup rate of the exchange cross peaks for several base-paired imino protons in the RNA yielded an apparent k(on) of 600 M(-1) s(-1). This small apparent k(on) results because the free RNA exist as a dynamic equilibrium of inactive states rapidly interconverting with a low population of active species. The data found here indicate that the RNA aptamer employs a conformational selection mechanism for binding theophylline in the absence of Mg(2+). The kinetic data found here also explain a very unusual property of this RNA-theophylline system: slow exchange on the NMR chemical shift time scale for a weakly binding complex. To our knowledge, it is unprecedented to have such a weakly binding complex (K(d) approximately 3.0 mM at 15 degrees C) show slow exchange on the NMR chemical shift time scale, but the results clearly demonstrate that slow exchange and weak binding are readily rationalized by a small k(on). Comparisons with other ligand-receptor interactions are presented.
在此通过二维(1)H - (1)H ZZ - 交换核磁共振光谱法测定了在不存在Mg(2+)的情况下茶碱与其RNA适体结合的表观结合和解离速率常数。对RNA中几个碱基配对亚氨基质子的交换交叉峰的积累速率进行分析,得出表观k(on)为600 M(-1) s(-1)。这个较小的表观k(on)是由于游离RNA以非活性状态的动态平衡存在,这些非活性状态与少量活性物种快速相互转化。此处发现的数据表明,在不存在Mg(2+)的情况下,RNA适体采用构象选择机制来结合茶碱。此处发现的动力学数据也解释了这个RNA - 茶碱系统的一个非常不寻常的特性:对于弱结合复合物,在核磁共振化学位移时间尺度上交换缓慢。据我们所知,如此弱结合的复合物(在15℃时K(d)约为3.0 mM)在核磁共振化学位移时间尺度上显示出缓慢交换是前所未有的,但结果清楚地表明,小的k(on)很容易解释缓慢交换和弱结合现象。文中还给出了与其他配体 - 受体相互作用的比较。