Długosz M, Bzowska A, Antosiewicz J M
Department of Biophysics, Warsaw University, Poland.
Biophys Chem. 2005 May 1;115(1):67-76. doi: 10.1016/j.bpc.2005.01.005. Epub 2005 Jan 28.
The binding of guanine to calf spleen purine nucleoside phosphorylase at 20 degrees C, in 20 mM Hepes-NaOH buffer, pH 7.0, at several ionic strength between 5 and 150 mM was investigated using a stopped-flow spectrofluorimeter. The kinetic transients registered after mixing a protein solution with ligand solutions of different concentrations were simultaneously fitted by several association reaction models using nonlinear least-squares procedure based on numerical integration of the chemical kinetic equations appropriate for given model. It is concluded that binding of a guanine molecule by each of the binding sites is a two-step process and that symmetrical trimeric calf spleen purine nucleoside phosphorylase represents a system of (identical) interacting binding sites. The interaction is visible through relations between the rate constants and non-additivity of changes in "molar" fluorescence for different forms of PNP-guanine complexes. It is also probable that electrostatic effects in guanine binding are weak, which indicates that it is the neutral form of the ligand which is bound and dissociated by PNP molecule.
在20 mM Hepes-NaOH缓冲液(pH 7.0)中,于5至150 mM的几种离子强度下,在20℃研究了鸟嘌呤与小牛脾嘌呤核苷磷酸化酶的结合。使用停流荧光分光光度计,将蛋白质溶液与不同浓度的配体溶液混合后记录的动力学瞬变,通过基于适用于给定模型的化学动力学方程的数值积分的非线性最小二乘法,同时用几种缔合反应模型进行拟合。得出的结论是,每个结合位点与鸟嘌呤分子的结合是一个两步过程,对称三聚体小牛脾嘌呤核苷磷酸化酶代表一个(相同的)相互作用结合位点系统。通过速率常数之间的关系以及不同形式的PNP-鸟嘌呤复合物“摩尔”荧光变化的非加和性,可以看出这种相互作用。鸟嘌呤结合中的静电效应也可能较弱,这表明与PNP分子结合和解离的是配体的中性形式。