Department of Chemistry, Durham University, South Road, Durham, DH1 3LE, UK.
Angew Chem Int Ed Engl. 2018 Jun 18;57(25):7488-7492. doi: 10.1002/anie.201801248. Epub 2018 May 14.
A series of three europium complexes bearing picolyl amine moieties was found to possess differing binding affinities towards Zn and three nucleotides: AMP, ADP, and ATP. A large increase in the total emission intensity was observed upon binding Zn , followed by signal amplification upon the addition of nucleotides. The resulting adducts possessed strong induced circularly polarised emission, with ADP and ATP signals of opposite sign. Model DFT geometries of the adducts suggest the Δ diastereoisomer is preferred for ATP and the Λ isomer for ADP/AMP. This change in sign allows the ADP/ATP (or AMP/ATP) ratio to be assessed by monitoring changes in the emission dissymmetry factor, g .
研究发现,一系列带有吡啶基胺部分的三个铕配合物对 Zn 和三种核苷酸(AMP、ADP 和 ATP)具有不同的结合亲和力。与 Zn 结合后,观察到总发射强度大幅增加,随后加入核苷酸后信号放大。所得加合物具有强的诱导圆偏振发射,ADP 和 ATP 的信号具有相反的符号。加合物的模型 DFT 几何结构表明,Δ 非对映异构体优先用于 ATP,而 Λ 异构体用于 ADP/AMP。这种符号变化允许通过监测发射不对称因子 g 的变化来评估 ADP/ATP(或 AMP/ATP)的比值。