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制备色氨酸-BODIPY 荧光氨基酸标记肽,用于增强活细胞荧光成像。

Preparation of a Trp-BODIPY fluorogenic amino acid to label peptides for enhanced live-cell fluorescence imaging.

机构信息

Department of Inorganic and Organic Chemistry, University of Barcelona, Barcelona, Spain.

Medical Research Council/University of Edinburgh Centre for Inflammation Research, The University of Edinburgh, Edinburgh, UK.

出版信息

Nat Protoc. 2017 Aug;12(8):1588-1619. doi: 10.1038/nprot.2017.048. Epub 2017 Jul 13.

Abstract

Fluorescent peptides are valuable tools for live-cell imaging because of the high specificity of peptide sequences for their biomolecular targets. When preparing fluorescent versions of peptides, labels must be introduced at appropriate positions in the sequences to provide suitable reporters while avoiding any impairment of the molecular recognition properties of the peptides. This protocol describes the preparation of the tryptophan (Trp)-based fluorogenic amino acid Fmoc-Trp(C-BODIPY)-OH and its incorporation into peptides for live-cell fluorescence imaging-an approach that is applicable to most peptide sequences. Fmoc-Trp(C-BODIPY)-OH contains a BODIPY (4,4-difluoro-4-bora-3a,4a-diaza-s-indacene) fluorogenic core, which works as an environmentally sensitive fluorophore, showing high fluorescence in lipophilic conditions. It is attached to Trp via a spacer-free C-C linkage, resulting in a labeled amino acid that can mimic the molecular interactions of Trp, enabling wash-free imaging. This protocol covers the chemical synthesis of the fluorogenic amino acid Fmoc-Trp(C-BODIPY)-OH (3-4 d), the preparation of the labeled antimicrobial peptide BODIPY-cPAF26 by solid-phase synthesis (6-7 d) and its spectral and biological characterization as a live-cell imaging probe for different fungal pathogens. As an example, we include a procedure for using BODIPY-cPAF26 for wash-free imaging of fungal pathogens, including real-time visualization of Aspergillus fumigatus (5 d for culturing, 1-2 d for imaging).

摘要

荧光肽是活细胞成像的有价值的工具,因为肽序列对其生物分子靶标具有高度特异性。在制备肽的荧光版本时,必须在序列的适当位置引入标记物,以提供合适的报告物,同时避免肽的分子识别特性受到任何损害。本协议描述了色氨酸(Trp)基荧光氨基酸 Fmoc-Trp(C-BODIPY)-OH 的制备及其在活细胞荧光成像中的掺入-这种方法适用于大多数肽序列。Fmoc-Trp(C-BODIPY)-OH 含有 BODIPY(4,4-二氟-4-硼-3a,4a-二氮杂-s-茚)荧光团核心,作为一种环境敏感的荧光团,在亲脂性条件下显示出高荧光。它通过无间隔 C-C 键连接到 Trp 上,形成一种标记的氨基酸,可以模拟 Trp 的分子相互作用,实现免洗成像。本协议涵盖了荧光氨基酸 Fmoc-Trp(C-BODIPY)-OH 的化学合成(3-4 天),通过固相合成制备标记的抗菌肽 BODIPY-cPAF26(6-7 天)及其作为不同真菌病原体活细胞成像探针的光谱和生物学特性。作为一个例子,我们包括了使用 BODIPY-cPAF26 进行真菌病原体免洗成像的程序,包括对烟曲霉(5 天用于培养,1-2 天用于成像)的实时可视化。

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