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Heterocyclic amino acids as fluorescent reporters for transition metals: synthesis and evaluation of novel furyl-benzoxazol-5-yl-l-alanines

机译:杂环氨基酸作为过渡金属的荧光报道:新型呋喃基 - 苯并恶唑-5-基-L-丙氨酸的合成和评价

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摘要

Unnatural alanine derivatives bearing a benzoxazole moiety at the side chain, acting simultaneously as the coordinating and reporting unit, via fluorescence changes, were synthesised with a furan ring at position 2, substituted with different (hetero)aryl substituents, in order to tune the photophysical and chemosensory properties of the resulting compounds. The amino acid derivatives were prepared in protected form at their N- and C-termini with tert-butoxycarbonyl urethane and methyl ester protecting groups, respectively. The novel furyl-benzoxazol-5-yl-l-alanines were evaluated for the first time in the recognition of several transition metal cations with environmental, medicinal and analytical interest such as Co2+, Cu2+, Zn2+ and Ni2+, in acetonitrile solution. The spectrofluorimetric titrations showed that the novel benzoxazolyl-alanines 3a-g were sensitive, although not selective, fluorimetric chemosensors for the above mentioned cations, with the best result being obtained for N,N-diethylamino substituted alanine 3d in the sensing of Cu2+. The heterocyclic system at the side chain was identified as the key factor in the recognition event of the metal cations, through its electron donor atoms. The encouraging photophysical and metal ion sensing properties of these furyl-benzoxazolyl-alanines suggest that they can be used to obtain bioinspired fluorescent reporters for metal ions such as peptides/proteins with chemosensory/probing abilities.
机译:携带侧链的苯并恶唑部分的非丙氨酸衍生物,通过荧光变化同时作用于配位和报告单元,用呋喃环在位2的位置被合成,用不同(杂)芳基取代基取代,以调整光物理和所得化合物的化学感受。氨基酸衍生物在其N-和C-末端用叔丁氧基羰基氨基甲酸酯和甲酯保护基制备氨基酸衍生物。在乙腈溶液中首次评价新型呋喃基-Benzoxazol-5-基-1-丙氨酸在乙腈溶液中识别具有环+,Cu2 +,Zn2 +和Ni2 +的几种过渡金属阳离子。光谱氟化滴定表明,新型苯并恶唑基 - 丙氨酸3a-g敏感,但是对于上述阳离子而不是选择性的荧光化疗传感器,在Cu2 +的感测中获得N,N-二乙基氨基取代的丙氨酸3D的最佳结果。侧链的杂环系统被鉴定为金属阳离子的识别事件的关键因素,通过其电子供体原子。这些呋喃基苯并唑唑基 - 丙氨酸的令人鼓舞的光物理和金属离子感测性表明它们可用于获得具有化学感性/探测能力的肽/蛋白质如肽/蛋白质的BioInspired荧光报道。

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