Suppr超能文献

三阳离子卟啉与各种结构的含鸟嘌呤聚核糖核苷酸的相互作用。

Interaction of a tricationic meso-substituted porphyrin with guanine-containing polyribonucleotides of various structures.

机构信息

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. Author to whom any correspondence should be addressed.

出版信息

Methods Appl Fluoresc. 2016 Aug 18;4(3):034005. doi: 10.1088/2050-6120/4/3/034005.

Abstract

The interaction of a tricationic water-soluble meso-(N-methylpyridinium)-substituted porphyrin, TMPyP, derived from classic TMPyP4, with double-stranded poly(G)  ⋅  poly(C) and four-stranded poly(G) polyribonucleotides has been studied in aqueous buffered solutions, pH 6.9, of low and near-physiological ionic strengths in a wide range of molar phosphate-to-dye ratios (P/D). To clarify the binding modes of TMPyP to biopolymers various spectroscopic techniques, including absorption and polarized fluorescence spectroscopy, Raman spectroscopy, and resonance light scattering, were used. As a result, two competitive binding modes were revealed. In solution of low ionic strength outside binding of the porphyrin to the polynucleotide backbone with self-stacking prevailed at low P/D ratios (P/D  <  3.5). It manifested itself by the substantial quenching of porphyrin fluorescence. Also the formation of large-scale porphyrin aggregates was observed near the stoichiometric binding ratio. The spectral changes observed at P/D  >  30 including emission enhancement were supposed to be caused by the embedding of partially stacked porphyrin J-dimers into the polymer groove. TMPyP binding to poly(G) induced a fluorescence increase 2.5 times as large as that observed for poly(G)  ⋅  poly(C). In solution of near-physiological ionic strength the efficiency of external porphyrin binding was reduced substantially due to the competitive binding of Na ions with the polymer backbone. The spectroscopic characteristics of porphyrin bound to polynucleotides at different conditions were compared with those for free porphyrin.

摘要

经典 TMPyP4 衍生的三阳离子水溶性中(N-甲基吡啶鎓)取代卟啉 TMPyP 与双链聚(G)·聚(C)和四链聚(G)多核苷酸在低离子强度和接近生理离子强度的 pH 6.9 缓冲水溶液中的相互作用已在广泛的摩尔磷酸盐与染料比(P/D)范围内进行了研究。为了阐明 TMPyP 与生物聚合物的结合模式,使用了各种光谱技术,包括吸收和偏振荧光光谱、拉曼光谱和共振光散射。结果,揭示了两种竞争性的结合模式。在低离子强度的溶液中,在低 P/D 比(P/D<3.5)下,卟啉与多核苷酸主链的外部结合占主导地位,存在自堆积。这表现在卟啉荧光的显著猝灭上。在接近化学计量结合比的地方,也观察到了大尺寸卟啉聚集体的形成。在 P/D>30 时观察到的包括发射增强的光谱变化被认为是部分堆积的卟啉 J-二聚体嵌入聚合物沟槽引起的。TMPyP 与聚(G)的结合导致荧光增强 2.5 倍,这比观察到的聚(G)·聚(C)的荧光增强还要大。在接近生理离子强度的溶液中,由于钠离子与聚合物主链的竞争结合,外部卟啉结合的效率大大降低。在不同条件下与多核苷酸结合的卟啉的光谱特征与游离卟啉进行了比较。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验