Plamont Marie-Aude, Billon-Denis Emmanuelle, Maurin Sylvie, Gauron Carole, Pimenta Frederico M, Specht Christian G, Shi Jian, Quérard Jérôme, Pan Buyan, Rossignol Julien, Moncoq Karine, Morellet Nelly, Volovitch Michel, Lescop Ewen, Chen Yong, Triller Antoine, Vriz Sophie, Le Saux Thomas, Jullien Ludovic, Gautier Arnaud
Department of Chemistry, École Normale Supérieure, Paris Sciences et Lettres (PSL) Research University, F-75005 Paris, France; Sorbonne Universités, Université Pierre et Marie Curie, UMR 8640 PASTEUR, F-75005 Paris, France; CNRS, UMR 8640 PASTEUR, F-75005 Paris, France;
Centre for Interdisciplinary Research in Biology, CNRS UMR 7241, INSERM U1050, Labex MemoLife, Paris Sciences et Lettres (PSL) Research University/Collège de France, F-75005 Paris, France;
Proc Natl Acad Sci U S A. 2016 Jan 19;113(3):497-502. doi: 10.1073/pnas.1513094113. Epub 2015 Dec 28.
This paper presents Yellow Fluorescence-Activating and absorption-Shifting Tag (Y-FAST), a small monomeric protein tag, half as large as the green fluorescent protein, enabling fluorescent labeling of proteins in a reversible and specific manner through the reversible binding and activation of a cell-permeant and nontoxic fluorogenic ligand (a so-called fluorogen). A unique fluorogen activation mechanism based on two spectroscopic changes, increase of fluorescence quantum yield and absorption red shift, provides high labeling selectivity. Y-FAST was engineered from the 14-kDa photoactive yellow protein by directed evolution using yeast display and fluorescence-activated cell sorting. Y-FAST is as bright as common fluorescent proteins, exhibits good photostability, and allows the efficient labeling of proteins in various organelles and hosts. Upon fluorogen binding, fluorescence appears instantaneously, allowing monitoring of rapid processes in near real time. Y-FAST distinguishes itself from other tagging systems because the fluorogen binding is highly dynamic and fully reversible, which enables rapid labeling and unlabeling of proteins by addition and withdrawal of the fluorogen, opening new exciting prospects for the development of multiplexing imaging protocols based on sequential labeling.
本文介绍了黄色荧光激活和吸收转移标签(Y-FAST),一种小型单体蛋白标签,其大小仅为绿色荧光蛋白的一半,通过一种可透过细胞且无毒的荧光配体(即所谓的荧光原)的可逆结合和激活,能够以可逆且特异性的方式对蛋白质进行荧光标记。基于两种光谱变化(荧光量子产率增加和吸收红移)的独特荧光原激活机制提供了高标记选择性。Y-FAST是通过利用酵母展示和荧光激活细胞分选的定向进化,从14 kDa的光活性黄色蛋白改造而来。Y-FAST与常见荧光蛋白一样明亮,具有良好的光稳定性,并能在各种细胞器和宿主中对蛋白质进行高效标记。荧光原结合后,荧光瞬间出现,可实现对快速过程的近实时监测。Y-FAST与其他标记系统的不同之处在于,荧光原结合具有高度动态性且完全可逆,这使得通过添加和去除荧光原能够快速对蛋白质进行标记和去标记,为基于顺序标记的多重成像方案的开发开辟了新的令人兴奋的前景。