Ryazanova Olga, Voloshin Igor, Dubey Igor, Dubey Larysa, Karachevtsev Victor
Department of Molecular Biophysics, B. Verkin Institute for Low Temperature Physics and Engineering, National Academy of Sciences of Ukraine, 47 Nauky Ave, Kharkiv, 61103, Ukraine.
Department of Synthetic Bioregulators, Institute of Molecular Biology and Genetics, National Academy of Sciences of Ukraine, 150 Zabolotnogo Str., Kiev, 03143, Ukraine.
J Fluoresc. 2024 Oct 28. doi: 10.1007/s10895-024-04000-4.
The porphyrins are macrocyclic compounds widely used as photosensitizers in anticancer photodynamic therapy. The binding of a tricationic meso-tris(N-methylpyridinium)-porphyrin, TMPyP, to poly(A)⋅poly(U) polynucleotide has been studied in neutral buffered solution, pH6.9, of low and near-physiological ionic strength in a wide range of molar phosphate-to-dye ratios (P/D). Effective TMPyP binding to the biopolymer was established using absorption spectroscopy, polarized fluorescence, fluorimetric titration and resonance light scattering. We propose a model in which TMPyP binds to the polynucleotide in two competitive binding modes: at low P/D ratios (< 4) external binding of the porphyrin to polynucleotide backbone without self-stacking dominates, and at higher P/D (> 30) the partially stacked porphyrin J-dimers are embedded into the polymer groove. Enhancement of the porphyrin emission was observed upon binding in all P/D range, contrasting the binding of this porphyrin to poly(G)⋅poly(C) with significant quenching of the porphyrin fluorescence at low P/D ratios. This observation indicates that TMPyP can discriminate between poly(A)⋅poly(U) and poly(G)⋅poly(C) polynucleotides at low P/D ratios. Formation of highly scattering extended porphyrin aggregates was observed near the stoichiometric in charge binding ratio, P/D = 3. It was revealed that the efficiency of the porphyrin external binding and aggregation is reduced in the solution of near-physiological ionic strength.
卟啉是一类大环化合物,在抗癌光动力疗法中广泛用作光敏剂。在pH6.9的中性缓冲溶液中,于低离子强度和接近生理离子强度条件下,在较宽的磷酸盐与染料摩尔比(P/D)范围内,研究了三价阳离子中位-三(N-甲基吡啶鎓)-卟啉(TMPyP)与聚(A)·聚(U)多核苷酸的结合情况。利用吸收光谱、偏振荧光、荧光滴定和共振光散射确定了TMPyP与生物聚合物的有效结合。我们提出了一个模型,其中TMPyP以两种竞争结合模式与多核苷酸结合:在低P/D比(<4)时,卟啉与多核苷酸主链的外部结合占主导,且不存在自堆积现象;在较高P/D比(>30)时,部分堆积的卟啉J-二聚体嵌入聚合物凹槽。在所有P/D范围内,结合时均观察到卟啉发射增强,这与该卟啉与聚(G)·聚(C)结合时在低P/D比下卟啉荧光显著猝灭形成对比。这一观察结果表明,TMPyP在低P/D比时能够区分聚(A)·聚(U)和聚(G)·聚(C)多核苷酸。在电荷结合比的化学计量比附近,即P/D = 3时,观察到形成了高度散射的扩展卟啉聚集体。结果表明,在接近生理离子强度的溶液中,卟啉外部结合和聚集的效率降低。