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通过取代来调节吲哚的电子跃迁能:用于鉴定吸收和发射可见光的色氨酸生色团。

Tuning the electronic transition energy of indole via substitution: application to identify tryptophan-based chromophores that absorb and emit visible light.

机构信息

Department of Chemistry, University of Pennsylvania, 231 South 34th Street, Philadelphia, Pennsylvania 19104, USA.

出版信息

Phys Chem Chem Phys. 2021 Mar 21;23(11):6433-6437. doi: 10.1039/d0cp06710e. Epub 2021 Mar 12.

Abstract

Fluorescent amino acids (FAAs) offer significant advantages over fluorescent proteins in applications where the fluorophore size needs to be limited or minimized. A long-sought goal in biological spectroscopy/microcopy is to develop visible FAAs by modifying the indole ring of tryptophan. Herein, we examine the absorption spectra of a library of 4-substituted indoles and find that the frequency of the absorption maximum correlates linearly with the global electrophilicity index of the substituent. This finding permits us to identify two promising candidates, 4-formyltryptophan (4CHO-Trp) and 4-nitrotryptophan (4NO-Trp), both of which can be excited by visible light. Further fluorescence measurements indicate that while 4CHO-indole (and 4CHO-Trp) emits cyan fluorescence with a reasonably large quantum yield (ca. 0.22 in ethanol), 4NO-indole is essentially non-fluorescent, suggesting that 4CHO-Trp (4NO-Trp) could be useful as a fluorescence reporter (quencher). In addition, we present a simple method for synthesizing 4CHO-Trp.

摘要

荧光氨基酸(FAAs)在需要限制或最小化荧光团大小的应用中比荧光蛋白具有显著优势。在生物光谱学/显微镜学中,长期以来的一个目标是通过修饰色氨酸的吲哚环来开发可见的 FAAs。在此,我们研究了 4-取代吲哚的库的吸收光谱,发现吸收最大值的频率与取代基的全球电负性指数呈线性相关。这一发现使我们能够识别出两种有前途的候选物,4-甲酰基色氨酸(4CHO-Trp)和 4-硝基色氨酸(4NO-Trp),它们都可以被可见光激发。进一步的荧光测量表明,虽然 4CHO-吲哚(和 4CHO-Trp)以相当大的量子产率(在乙醇中约为 0.22)发出蓝绿色荧光,但 4NO-吲哚基本上是非荧光的,这表明 4CHO-Trp(4NO-Trp)可能作为荧光报告器(猝灭剂)有用。此外,我们还提出了一种合成 4CHO-Trp 的简单方法。

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