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A new application of click chemistry in situ: development of fluorescent probe for specific G-quadruplex topology

机译:点击化学技术的新应用:针对特定G-四链体拓扑结构的荧光探针的开发

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摘要

Target-guided synthesis is an approach to drug discovery that allows the target to self-assemble its own binding agents. So far, target-guided synthesis and especially in situ click chemistry have attracted extensive attention and have led to the identification of highly potent inhibitors for proteins. In this study, we expand the application of in situ click chemistry and present a procedure using this approach to identify selective fluorescent probes for a specific topology of G-quadruplex nucleic acids, the parallel G-quadruplexes. On this basis, compound 15 assembled by triarylimidazole scaffold and carboxyl side chain was a positive hit, demonstrating highly potential in the sensitive and selective detection of parallel G-quadruplexes. Such selective fluorescence response can be rationalized in terms of different binding affinities between 15 and G-quadruplexes. Our work accordingly represents a new development towards the application of in situ click chemistry to develop selective fluorescent probes and may also shed light on the search for probes for a specific G-quadruplex topology.
机译:靶标引导的合成是药物发现的一种方法,它可使靶标自行组装其自身的结合剂。迄今为止,靶标指导的合成,尤其是原位点击化学已引起广泛关注,并导致鉴定出高效的蛋白质抑制剂。在这项研究中,我们扩大了原位点击化学的应用范围,并提出了一种使用该方法来识别选择性荧光探针的方法,该探针针对G-四链体核酸(平行的G-四链体)的特定拓扑结构。在此基础上,由三芳基咪唑骨架和羧基侧链组装的化合物15受到了积极的肯定,在平行G-四链体的灵敏和选择性检测中显示出很高的潜力。可以根据15和G-四链体之间的不同结合亲和力来合理化这种选择性荧光反应。因此,我们的工作代表了应用原位点击化学技术开发选择性荧光探针的新进展,也可能为寻找特定G-四链体拓扑的探针提供了亮点。

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