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Newly characterized interaction stabilizes DNA structure: oligoethylene glycols stabilize G-quadruplexes CH–π interactions

机译:新近表征的相互作用可稳定DNA结构:低聚乙二醇可稳定G-四链体CH-π相互作用

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摘要

Oligoethylene glycols are used as crowding agents in experiments that aim to understand the effects of intracellular environments on DNAs. Moreover, DNAs with covalently attached oligoethylene glycols are used as cargo carriers for drug delivery systems. To investigate how oligoethylene glycols interact with DNAs, we incorporated deoxythymidine modified with oligoethylene glycols of different lengths, such as tetraethylene glycol (TEG), into DNAs that form antiparallel G-quadruplex or hairpin structures such that the modified residues were incorporated into loop regions. Thermodynamic analysis showed that because of enthalpic differences, the modified G-quadruplexes were stable and the hairpin structures were slightly unstable relative to unmodified DNA. The stability of G-quadruplexes increased with increasing length of the ethylene oxides and the number of deoxythymidines modified with ethylene glycols in the G-quadruplex. Nuclear magnetic resonance analyses and molecular dynamics calculations suggest that TEG interacts with bases in the G-quartet and loop via CH–π and lone pair–π interactions, although it was previously assumed that oligoethylene glycols do not directly interact with DNAs. The results suggest that numerous cellular co-solutes likely affect DNA function through these CH–π and lone pair–π interactions.
机译:低聚乙二醇在实验中用作拥挤剂,旨在了解细胞内环境对DNA的影响。而且,具有共价连接的低聚乙二醇的DN​​A被用作药物递送系统的货物载体。为了研究低聚乙二醇如何与DNA相互作用,我们将用不同长度的低聚乙二醇(例如四甘醇(TEG))修饰的脱氧胸苷掺入形成反平行G-四链体或发夹结构的DNA中,从而使修饰的残基并入环区。热力学分析表明,由于焓差,相对于未修饰的DNA,修饰的G-四链体稳定并且发夹结构略微不稳定。 G-四链体的稳定性随着环氧乙烷的长度增加和在G-四链体中用乙二醇修饰的脱氧胸苷的数量而增加。核磁共振分析和分子动力学计算表明,尽管以前假设低聚乙二醇不直接与DNA相互作用,但TEG通过CH-π和孤对-π相互作用与G四元组和环中的碱基相互作用。结果表明,许多细胞共溶质可能通过这些CH–π和孤对–π相互作用影响DNA功能。

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