Faculty of Chemistry, Adam Mickiewicz University, 61-614, Poznan, Poland.
Sci Rep. 2023 Jul 4;13(1):10787. doi: 10.1038/s41598-023-37986-1.
The complexation reactions of phosphocholine and pyrimidine nucleosides as well as nucleotides with copper(II) ions were studied in the water system. Using potentiometric methods and computer calculations, the stability constants of the species were determined. Using spectroscopic methods such as UV-vis, EPR, C NMR, P NMR, FT-IR and CD, the coordination mode was established for complexes created in pH range 2.5-11.0. These studies will lead to a better understanding the role of copper(II) ions in living organisms and explain the interactions between them and the studied bioligands. The differences and similarities between nucleosides and nucleotides in the studied systems were also described, which testify to the significant influence of phosphate groups on the processes of metal ion complexation and interactions between ligands.
在水体系中研究了磷酸胆碱和嘧啶核苷以及核苷酸与铜(II)离子的络合反应。使用电位法和计算机计算确定了物种的稳定常数。使用光谱方法,如 UV-vis、EPR、C NMR、P NMR、FT-IR 和 CD,确定了在 pH 值为 2.5-11.0 范围内形成的配合物的配位方式。这些研究将有助于更好地理解铜(II)离子在生物体中的作用,并解释它们与研究生物配体之间的相互作用。还描述了在研究体系中核苷和核苷酸之间的差异和相似之处,这证明了磷酸基团对金属离子络合过程和配体之间相互作用的重大影响。