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4-氰基吲哚-2'-脱氧核苷作为 DNA 结构和动力学的双荧光和红外探针。

4-Cyanoindole-2'-deoxyribonucleoside as a Dual Fluorescence and Infrared Probe of DNA Structure and Dynamics.

机构信息

Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia, PA 19104, USA.

Department of Chemistry, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Molecules. 2019 Feb 8;24(3):602. doi: 10.3390/molecules24030602.

Abstract

Unnatural nucleosides possessing unique spectroscopic properties that mimic natural nucleobases in both size and chemical structure are ideally suited for spectroscopic measurements of DNA/RNA structure and dynamics in a site-specific manner. However, such unnatural nucleosides are scarce, which prompts us to explore the utility of a recently found unnatural nucleoside, 4-cyanoindole-2'-deoxyribonucleoside (4CNI-NS), as a site-specific spectroscopic probe of DNA. A recent study revealed that 4CNI-NS is a universal nucleobase that maintains the high fluorescence quantum yield of 4-cyanoindole and that among the four natural nucleobases, only guanine can significantly quench its fluorescence. Herein, we further show that the C≡N stretching frequency of 4CNI-NS is sensitive to the local environment, making it a useful site-specific infrared probe of oligonucleotides. In addition, we demonstrate that the fluorescence-quencher pair formed by 4CNI-NS and guanine can be used to quantitatively assess the binding affinity of a single-stranded DNA to the protein system of interest via fluorescence spectroscopy, among other applications. We believe that this fluorescence binding assay is especially useful as its potentiality allows high-throughput screening of DNA⁻protein interactions.

摘要

具有独特光谱性质的非天然核苷,其大小和化学结构与天然核苷类似,非常适合以特定方式对 DNA/RNA 结构和动态进行光谱测量。然而,这样的非天然核苷非常稀缺,这促使我们探索最近发现的非天然核苷,4-氰基吲哚-2'-脱氧核苷(4CNI-NS),作为 DNA 的一种特定于位点的光谱探针的用途。最近的一项研究表明,4CNI-NS 是一种通用的核碱基,保持了 4-氰基吲哚的高荧光量子产率,而在四种天然核碱基中,只有鸟嘌呤可以显著猝灭其荧光。在此,我们进一步表明,4CNI-NS 的 C≡N 伸缩频率对局部环境敏感,使其成为寡核苷酸的有用的特定于位点的红外探针。此外,我们证明,4CNI-NS 和鸟嘌呤形成的荧光猝灭剂对可以用于通过荧光光谱定量评估单链 DNA 与感兴趣的蛋白质体系的结合亲和力,以及其他应用。我们相信,这种荧光结合测定法特别有用,因为其潜力允许对 DNA-蛋白质相互作用进行高通量筛选。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeae/6384856/7787aa8e9bce/molecules-24-00602-g001.jpg

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