Department of Molecular Biophysics, B. Verkin Institute for Low Temperature Physics and Engineering, National Academy of Sciences of Ukraine, 47 Lenin ave, 61103 Kharkov, Ukraine.
Department of Molecular Biophysics, B. Verkin Institute for Low Temperature Physics and Engineering, National Academy of Sciences of Ukraine, 47 Lenin ave, 61103 Kharkov, Ukraine.
Biophys Chem. 2014 Jan;185:39-46. doi: 10.1016/j.bpc.2013.11.006. Epub 2013 Nov 26.
Self-assemblies formed by the new synthesized tricationic porphyrin derivative (TMPyP(3+)) on the polyanionic inorganic polyphosphate (PPS) in aqueous solution were studied using different spectroscopic techniques and DFT calculation method. From the fluorescence quenching of the bound TMPyP(3+) molecules and their Raman spectra we conclude that porphyrin chromophores form the stable π-π stacking-assemblies onto PPS polyanions. The transformation of the Soret band in absorption spectra at different PPS/TMPyP(3+)concentration ratios evidences that the assemblies are mixtures of J- and H-aggregates. Molecular modeling performed shows that the flexibility of PPS strand allows a realization of spiral or "face-to-face" one-dimensional structures formed by porphyrin molecules arranged in parallel and antiparallel modes. The peculiarity of PPS structure allows a formation of two porphyrin stacks on opposite sides of polymer strands that result in the appearance of higher-order aggregates. Their size was estimated from the light scattering data. Distinctions between TMPyP(3+) and TMPyP4 aggregation on PPS template are discussed.
在水溶液中,通过新合成的三阳离子卟啉衍生物(TMPyP(3+))与多阴离子无机聚磷酸酯(PPS)之间的自组装进行了研究,使用了不同的光谱技术和 DFT 计算方法。从结合的 TMPyP(3+)分子的荧光猝灭及其拉曼光谱,我们得出结论,卟啉生色团在 PPS 多阴离子上形成稳定的π-π堆积组装。在不同的 PPS/TMPyP(3+)浓度比的吸收光谱中,Soret 带的转变证明了组装是 J-和 H-聚集体的混合物。进行的分子建模表明,PPS 链的柔韧性允许通过以平行和反平行模式排列的卟啉分子实现螺旋或“面对面”一维结构。PPS 结构的特殊性允许在聚合物链的相对侧上形成两个卟啉堆叠,从而导致出现更高阶的聚集体。它们的大小是根据光散射数据估计的。讨论了 TMPyP(3+)和 TMPyP4 在 PPS 模板上聚集的区别。