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Two cationic porphyrin isomers showing different multimeric G-quadruplex recognition specificity against monomeric G-quadruplexes

机译:两种阳离子卟啉异构体对单体G-四链体显示出不同的多聚体G-四链体识别特异性

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摘要

Ligands that can interact specifically with telomeric multimeric G-quadruplexes could be developed as promising anticancer drugs with few side effects related to other G-quadruplex-forming regions. In this paper, a new cationic porphyrin derivative, m-TMPipEOPP, was synthesized and characterized. Its multimeric G-quadruplex recognition specificity under molecular crowding conditions was compared to its isomer p-TMPipEOPP. The slight structural difference accounts for different multimeric G-quadruplex recognition specificity for the two isomers. p-TMPipEOPP can barely discriminate between multimeric and monomeric G-quadruplexes. By contrast, m-TMPipEOPP can bind with multimeric but not with monomeric G-quadruplexes. p-TMPipEOPP might bind to multimeric G-quadruplexes by two modes: sandwich-like end-stacking mode and pocket-dependent intercalative mode. Increasing the pocket size between adjacent two G-quadruplex uints is beneficial for the latter mode. m-TMPipEOPP might bind to multimeric G-quadruplexes by a side binding mode, which confers m-TMPipEOPP with higher multimeric G-quadruplex recognition specificity compared to p-TMPipEOPP. m-TMPipEOPP increases the stability of multimeric G-quadruplex under both dilute and molecular crowding conditions but its G-quadruplex-stabilizing ability is a little weaker than p-TMPipEOPP. These results provide important information for the design of highly specific multimeric G-quadruplex ligands. Another interesting finding is that pocket size is an important factor in determining the stability of multimeric G-quadruplexes.
机译:可以与端粒多聚体G-四链体特异性相互作用的配体可以作为有前途的抗癌药物开发,与其他G-四链体形成区域相关的副作用很少。本文合成并表征了一种新型阳离子卟啉衍生物m-TMPipEOPP。将其在分子拥挤条件下的多聚体G-四链体识别特异性与其异构体p-TMPipEOPP进行了比较。轻微的结构差异解释了两个异构体的不同多聚体G-四链体识别特异性。 p-TMPipEOPP几乎不能区分多聚体和单体G-四链体。相反,m-TMPipEOPP可以与多聚体结合,但不能与单体G-四链体结合。 p-TMPipEOPP可能通过两种模式与多聚体G-四链体结合:类三明治式末端堆积模式和依赖口袋的插层模式。增大相邻两个G四联体单元之间的口袋大小对于后一种模式是有利的。 m-TMPipEOPP可能通过侧面结合模式与多聚体G-四链体结合,与p-TMPipEOPP相比,它赋予m-TMPipEOPP更高的多聚体G-四链体识别特异性。 m-TMPipEOPP在稀释和分子拥挤条件下均能提高多聚体G-四链体的稳定性,但其G-四链体的稳定能力比p-TMPipEOPP弱一些。这些结果为设计高度特异性的多聚体G-四链体配体提供了重要信息。另一个有趣的发现是,口袋大小是决定多聚体G-四链体稳定性的重要因素。

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