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The meta-green fluorescent protein chromophore.
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合成荧光咪唑的pH依赖性光学性质

pH-dependent optical properties of synthetic fluorescent imidazoles.

作者信息

Berezin Mikhail Y, Kao Jeff, Achilefu Samuel

机构信息

Department of Radiology, Washington University School of Medicine, 4525 Scott Avenue, St. Louis, MO 63110, USA.

出版信息

Chemistry. 2009;15(14):3560-6. doi: 10.1002/chem.200801784.

DOI:10.1002/chem.200801784
PMID:19212987
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2844652/
Abstract

An imidazole moiety is often found as an integral part of fluorophores in a variety of fluorescent proteins and many such proteins display pH-dependent light emission. In contrast, synthetic fluorescent compounds with incorporated imidazoles are rare and have not been studied as pH probes. In this report, the richness of imidazole optical properties, including pH sensitivity, was demonstrated by means of a novel imidazole-based fluorophore 1H-imidazol-5-yl-vinylbenz[e]indolium. Three species corresponding to protonated, neutral, and deprotonated imidazoles were identified in the broad range of pH 1-12. The absorption and emission bands of each species were assigned by comparative spectral analysis with synthesized mono- and di-N-methylated fluorescent imidazole analogues. pK(a) analysis in the ground and the excited states showed photoacidic properties of the fluorescent imidazoles due to the excited state proton transfer (ESPT). This effect was negligible for substituted imidazoles. The assessment of a pH-sensitive center in the imidazole ring revealed the switching of the pH-sensitive centers from 1-N in the ground state to 3-N in the excited state. The effect was attributed to the unique kind of the excited state charge transfer (ESCT) resulting in a positive charge swapping between two nitrogens.

摘要

咪唑部分常作为多种荧光蛋白中荧光团的组成部分,许多此类蛋白表现出pH依赖性发光。相比之下,含有咪唑的合成荧光化合物很少见,且尚未作为pH探针进行研究。在本报告中,通过一种新型的基于咪唑的荧光团1H-咪唑-5-基-乙烯基苯并[e]吲哚,证明了咪唑光学性质的丰富性,包括pH敏感性。在1-12的广泛pH范围内鉴定出了与质子化、中性和去质子化咪唑相对应的三种物种。通过与合成的单-N-甲基化和二-N-甲基化荧光咪唑类似物进行比较光谱分析,确定了每种物种的吸收和发射带。基态和激发态的pK(a)分析表明,由于激发态质子转移(ESPT),荧光咪唑具有光酸性性质。对于取代咪唑,这种效应可以忽略不计。对咪唑环中pH敏感中心的评估表明,pH敏感中心从基态的1-N切换到激发态的3-N。这种效应归因于一种独特的激发态电荷转移(ESCT),导致两个氮之间的正电荷交换。