Blad Heike, Reiter Nicholas J, Abildgaard Frits, Markley John L, Butcher Samuel E
NMRFAM, University of Wisconsin-Madison, 433 Babcock Dr., Madison, WI 53706, USA.
J Mol Biol. 2005 Oct 28;353(3):540-55. doi: 10.1016/j.jmb.2005.08.030. Epub 2005 Sep 2.
The U6 RNA intramolecular stem-loop (ISL) is a conserved component of the spliceosome, and contains an essential metal ion binding site centered between a protonated adenine, A79, and U80. Correlated with protonation of A79, U80 undergoes a base-flipping conformational change accompanied by significant helical movement. We have investigated the dynamics of the U6 ISL by analyzing the power dependence of 13C NMR relaxation rates in the rotating frame. The data provide evidence that the conformational transition is centered around an exchange lifetime of 84 micros. The U80 nucleotide displays low internal mobility on the picosecond time-scale at pH 7.0 but high internal mobility at pH 6.0, in agreement with the global transition resulting in the base of U80 adopting a looped-out conformation with increased dynamic disorder. A kinetic analysis suggests that the conformational change, rather than adenine protonation, is the rate-limiting step in the pathway of the conformational transition. Two nucleotides, U70 and U80, were found from chemical shift perturbation mapping to interact with the magnesium ion, with apparent K(d) values in the micromolar to millimolar range. These nucleotides also displayed metal ion-induced elevation of R1 rates, which can be explained by a model that assumes dynamic metal ion coordination concomitant with an induced higher shielding anisotropy for the base 13C nuclei. Addition of Mg2+ shifts the conformational equilibrium toward the high-pH (base-stacked) structure, accompanied by a significant drop in the apparent pK(a) of A79.
U6 RNA分子内茎环(ISL)是剪接体的一个保守组成部分,包含一个位于质子化腺嘌呤A79和U80之间的中心必需金属离子结合位点。与A79的质子化相关,U80经历碱基翻转构象变化并伴有显著的螺旋运动。我们通过分析旋转坐标系中13C NMR弛豫速率的功率依赖性来研究U6 ISL的动力学。数据表明构象转变以84微秒的交换寿命为中心。U80核苷酸在pH 7.0时在皮秒时间尺度上显示出低内部流动性,但在pH 6.0时具有高内部流动性,这与导致U80碱基采用具有增加动态无序的环出构象的全局转变一致。动力学分析表明,构象变化而非腺嘌呤质子化是构象转变途径中的限速步骤。通过化学位移扰动图谱发现两个核苷酸U70和U80与镁离子相互作用,其表观K(d)值在微摩尔到毫摩尔范围内。这些核苷酸还显示出金属离子诱导的R1速率升高,这可以用一个模型来解释,该模型假设动态金属离子配位伴随着对碱基13C核的诱导更高屏蔽各向异性。添加Mg2+会使构象平衡向高pH(碱基堆积)结构移动,同时A79的表观pK(a)显著下降。