Štěpánová Sille, Kašička Václav
Academy of Sciences of the Czech Republic, Institute of Organic Chemistry and Biochemistry, Flemingovo 2, Prague 6, 166 10, Czech Republic.
Methods Mol Biol. 2016;1466:219-32. doi: 10.1007/978-1-4939-4014-1_17.
This chapter deals with the application of affinity capillary electrophoresis (ACE) to investigation of noncovalent interactions (complexes) of valinomycin, a macrocyclic dodecadepsipeptide antibiotic ionophore, with ammonium and alkali metal ions (lithium, sodium, potassium, rubidium, and cesium). The strength of these interactions was characterized by the apparent binding (stability, association) constants (K b) of the above valinomycin complexes using the mobility shift assay mode of ACE. The study involved measurements of effective electrophoretic mobility of valinomycin at variable concentrations of ammonium or alkali metal ions in the background electrolyte (BGE). The effective electrophoretic mobilities of valinomycin measured at ambient temperature and variable ionic strength were first corrected to the reference temperature 25 °C and constant ionic strength (10 or 25 mM). Then, from the dependence of the corrected valinomycin effective mobility on the ammonium or alkali metal ion concentration in the BGE, the apparent binding constants of the valinomycin-ammonium or valinomycin-alkali metal ion complexes were determined using a nonlinear regression analysis. Logarithmic form of the binding constants (log K b) were found to be in the range of 1.50-4.63, decreasing in the order Rb(+) > K(+) > Cs(+) > > Na(+) > NH4 (+) ~ Li(+).
本章论述了亲和毛细管电泳(ACE)在研究缬氨霉素(一种大环十二肽抗生素离子载体)与铵离子和碱金属离子(锂、钠、钾、铷和铯)的非共价相互作用(复合物)中的应用。利用ACE的迁移率变化测定模式,通过上述缬氨霉素复合物的表观结合(稳定性、缔合)常数(Kb)来表征这些相互作用的强度。该研究涉及在背景电解质(BGE)中铵离子或碱金属离子浓度可变的情况下,测量缬氨霉素的有效电泳迁移率。首先将在环境温度和可变离子强度下测得的缬氨霉素有效电泳迁移率校正到参考温度25°C和恒定离子强度(10或25 mM)。然后,根据校正后的缬氨霉素有效迁移率对BGE中铵离子或碱金属离子浓度的依赖性,采用非线性回归分析确定缬氨霉素-铵离子或缬氨霉素-碱金属离子复合物的表观结合常数。发现结合常数的对数形式(log Kb)在1.50 - 4.63范围内,按Rb(+) > K(+) > Cs(+) > > Na(+) > NH4 (+) ~ Li(+)的顺序递减。