College of Chemistry and Molecular Sciences, Key Laboratory of Biomedical Polymers of, Ministry of Education, The Institute for Advanced Studies, Hubei Province Key Laboratory of Allergy and Immunology, Wuhan University, Wuhan, Hubei, 430072, P. R. China.
Angew Chem Int Ed Engl. 2018 Jul 26;57(31):9689-9693. doi: 10.1002/anie.201804007. Epub 2018 Jul 4.
In organisms 5-formyluracil (5fU), which is known as a vital natural nucleobase, is widely present. Despite the recent development of sensor designs for organic fluorescent molecules for selective targeting applications, biocompatible and easily operated probe designs that are based on natural nucleobase modifications have rarely been reported. Here, we introduce the idea of 5fU as a multifunctional building block to facilitate the design and synthetic development of biosensors. The azide group was derived from the sugar of a nucleoside, which can be further used in the selective binding of cells or organelles through click chemistry with alkynyl-modified targeting groups. The aldehyde group of 5fU can react with different chemicals to generate environmentally sensitive nucleobases that have obvious characteristics, which precious reactants cannot achieve for selective fluorogenic switch-on detection of a specific target. We first synthesized 5fU analogues that had aggregation-induced emission properties, and then we used triphenylphosphonium as a mitochondria-targeting group to selectively image mitochondria in cancer cells and mouse embryonic stem cells. Additionally, the reagents exhibit a high selectivity for reaction with 5fU, which means that the method can also be used for the detection of 5fU. Combining the two characteristics, the idea of 5fU as a multifunctional building block in biosensor designs may potentially be applicable in 5fU site-specific microenvironment detection in future research.
在生物体中,5- 甲酰基尿嘧啶(5fU)作为一种重要的天然核苷碱基广泛存在。尽管最近已经开发出用于选择性靶向应用的有机荧光分子传感器设计,但基于天然核苷碱基修饰的生物相容性和易于操作的探针设计很少有报道。在这里,我们介绍了将 5fU 作为多功能构建块的想法,以促进生物传感器的设计和合成发展。叠氮基团源自核苷的糖部分,通过点击化学与炔基修饰的靶向基团结合,可以进一步用于细胞或细胞器的选择性结合。5fU 的醛基可以与不同的化学物质反应,生成具有明显特征的环境敏感核苷碱基,而这些特征是使用珍贵的反应物无法实现的,对于特定目标的选择性荧光开关检测非常有用。我们首先合成了具有聚集诱导发射性质的 5fU 类似物,然后使用三苯基膦作为线粒体靶向基团,选择性地对癌细胞和小鼠胚胎干细胞中的线粒体进行成像。此外,这些试剂对与 5fU 的反应具有很高的选择性,这意味着该方法也可用于 5fU 的检测。结合这两个特点,5fU 作为生物传感器设计中的多功能构建块的想法可能在未来的研究中适用于 5fU 特异性微环境检测。