首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Interactions of Binuclear Ruthenium(Il) Complexes with Oligonucleotides in Hydrogel Matrix: Enantioselective Threading Intercalation into GC Context
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Interactions of Binuclear Ruthenium(Il) Complexes with Oligonucleotides in Hydrogel Matrix: Enantioselective Threading Intercalation into GC Context

机译:双核钌(II)配合物与水凝胶基质中的寡核苷酸的相互作用:对映选择性线程插入GC上下文。

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摘要

A stretched polyfvinyl alcohol) (PVA) film provides a unique matrix that enables also short DNA oligonucleotide duplex to be oriented and studied by linear dichroism (LD). This matrix further allows controlling DNA secondary structure by proper hydration (A or B form), and such humid films could potentially also mimic the molecular crowding in cellular contexts. However, early attempts to study intercalators and groove binders for probing DNA in PVA failed due to competitive matrix binding. Here we report the successful orientation in PVA of DNA oligonucleotide duplex hairpins with thread-intercalated binuclear complex [μ-(11,11'-bidppz)(phen)4Ru2]~(4+), and how LD depends on oligonucleotide sequence and metal center chirality. Opposite enantiomers of the ruthenium complex, A A and AA, were investigated with respect to enantioselectivity toward GC stretches as long as 22 bp. LD, supported by emission kinetics, reveals that threading intercalation occurs only with ΔΔ whereas ΔΔ remains externally bound, probably in either or both of the grooves of the GC-DNA, Enantioselective binding properties of sterically rigid DNA probes such as the ruthenium complexes could find applications for targeting nucleic acids, e.g., to inhibit transcription in therapeutic context such as treatment of malaria or cancer.
机译:拉伸聚乙烯醇(PVA)膜提供了独特的基质,该基质还使得短DNA寡核苷酸双链体也可以通过线性二色性(LD)进行定向和研究。该基质还允许通过适当的水合作用(A或B形式)控制DNA二级结构,这种潮湿的薄膜还可能在细胞环境中模仿分子拥挤。但是,由于竞争性基质结合,早期研究用于在PVA中探测DNA的嵌入剂和凹槽结合剂的尝试失败了。在这里,我们报告了具有线插双核复合物[μ-(11,11'-bidppz)(phen)4Ru2]〜(4+)的DNA寡核苷酸双链发夹在PVA中的成功定向,以及LD如何依赖于寡核苷酸序列和金属中心手性。研究了钌配合物的对映异构体A A和A A相对于长达22 bp的GC片段的对映选择性。 LD受发射动力学的支持,揭示仅在ΔΔ时才发生穿线插入,而ΔΔ仍在外部结合,可能在GC-DNA的一个或两个凹槽中,立体刚性DNA探针(如钌配合物)的对映选择性结合特性可以发现靶向核酸的应用,例如在治疗领域(例如疟疾或癌症)中抑制转录。

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