Walz F G
Department of Chemistry, Kent State University, OH 44242.
Biochim Biophys Acta. 1992 Oct 20;1159(3):327-34. doi: 10.1016/0167-4838(92)90063-j.
Temperature-jump relaxation kinetic studies were undertaken at 25 degrees C with ribonuclease T1 (RNase T1) alone and in the presence of guanosine (Guo) and 3'-guanylic acid (3'-GMP). No relaxations were observed in the absence of ligands and only one process was observed in their presence which reflected a simple on-off reaction in both cases. Apparent association rate constants, k(on), and dissociation rate constants, k(off), were evaluated at several pH values and their ratios, k(on)/k(off), were contrasted with independently determined values of the equilibrium association constant, Ka(eq). The value of k(on)/k(off) for Guo was significantly greater than Ka(eq), whereas Ka(eq) was significantly greater than k(on)/k(off) for 3'-GMP. The simplest interpretation of the result for Guo is that free RNase T1 undergoes a relatively slow undetected isomerization and Guo can bind only with one isomer. 3'-GMP can be considered to bind with the same preference, but in this case the initial enzyme complex undergoes a relatively slow undetected isomerization. These results are consistent with a recent NMR study which suggested that RNase T1 binding with Guo and 3'-GMP are coupled to slow exchange processes in a ligand dependent manner (Shimada, I. and Inagaki, F. (1990) Biochemistry 29, 757-764). It is tentatively concluded that binding of Guo and 3'-GMP at the active site of RNase T1 is limited to a sub-population of conformers involving the base-recognition site and that the phosphomonoester group of the nucleotide can engage in additional conformationally linked interactions at the adjacent catalytic site.
在25摄氏度下,分别对单独的核糖核酸酶T1(RNase T1)以及存在鸟苷(Guo)和3'-鸟苷酸(3'-GMP)时进行了温度跳跃弛豫动力学研究。在没有配体的情况下未观察到弛豫现象,而在有配体存在时仅观察到一个过程,这在两种情况下都反映了一个简单的结合-解离反应。在几个pH值下评估了表观缔合速率常数k(on)和解离速率常数k(off),并将它们的比值k(on)/k(off)与独立测定的平衡缔合常数Ka(eq)的值进行了对比。Guo的k(on)/k(off)值显著大于Ka(eq),而3'-GMP的Ka(eq)则显著大于k(on)/k(off)。对Guo结果的最简单解释是,游离的RNase T1经历了一个相对缓慢的未被检测到的异构化过程,并且Guo只能与一种异构体结合。可以认为3'-GMP以相同的偏好结合,但在这种情况下,初始的酶复合物经历了一个相对缓慢的未被检测到的异构化过程。这些结果与最近的一项核磁共振研究一致,该研究表明RNase T1与Guo和3'-GMP的结合以配体依赖的方式与缓慢交换过程相关联(岛田一郎和稻垣芳树(1990年)《生物化学》29卷,757 - 764页)。初步得出结论,Guo和3'-GMP在RNase T1活性位点的结合仅限于涉及碱基识别位点的构象异构体亚群,并且核苷酸的磷酸单酯基团可以在相邻的催化位点参与额外的构象相关相互作用。