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用于无冲洗荧光成像的 SNAP 标签荧光探针的研制。

Development of SNAP-tag fluorogenic probes for wash-free fluorescence imaging.

机构信息

New England Biolabs, Inc. 240 County Road, Ipswich, MA 01938, USA.

出版信息

Chembiochem. 2011 Sep 19;12(14):2217-26. doi: 10.1002/cbic.201100173. Epub 2011 Jul 26.

Abstract

The ability to specifically attach chemical probes to individual proteins represents a powerful approach to the study and manipulation of protein function in living cells. It provides a simple, robust and versatile approach to the imaging of fusion proteins in a wide range of experimental settings. However, a potential drawback of detection using chemical probes is the fluorescence background from unreacted or nonspecifically bound probes. In this report we present the design and application of novel fluorogenic probes for labeling SNAP-tag fusion proteins in living cells. SNAP-tag is an engineered variant of the human repair protein O(6)-alkylguanine-DNA alkyltransferase (hAGT) that covalently reacts with benzylguanine derivatives. Reporter groups attached to the benzyl moiety become covalently attached to the SNAP tag while the guanine acts as a leaving group. Incorporation of a quencher on the guanine group ensures that the benzylguanine probe becomes highly fluorescent only upon labeling of the SNAP-tag protein. We describe the use of intramolecularly quenched probes for wash-free labeling of cell surface-localized epidermal growth factor receptor (EGFR) fused to SNAP-tag and for direct quantification of SNAP-tagged β-tubulin in cell lysates. In addition, we have characterized a fast-labeling variant of SNAP-tag, termed SNAP(f), which displays up to a tenfold increase in its reactivity towards benzylguanine substrates. The presented data demonstrate that the combination of SNAP(f) and the fluorogenic substrates greatly reduces the background fluorescence for labeling and imaging applications. This approach enables highly sensitive spatiotemporal investigation of protein dynamics in living cells.

摘要

能够将化学探针特异性地附着到单个蛋白质上,代表了一种研究和操纵活细胞中蛋白质功能的强大方法。它为在广泛的实验环境中对融合蛋白进行成像提供了一种简单、稳健和通用的方法。然而,使用化学探针进行检测的一个潜在缺点是来自未反应或非特异性结合探针的荧光背景。在本报告中,我们介绍了用于标记活细胞中 SNAP 标签融合蛋白的新型荧光探针的设计和应用。SNAP 标签是一种经过工程改造的人类修复蛋白 O(6)-烷基鸟嘌呤-DNA 烷基转移酶(hAGT)的变体,它与苯甲基鸟嘌呤衍生物共价反应。连接到苯甲基部分的报告基团与 SNAP 标签共价结合,而鸟嘌呤作为离去基团。在鸟嘌呤基团上引入猝灭剂可确保只有在标记 SNAP 标签蛋白时,苯甲基鸟嘌呤探针才会变得高度荧光。我们描述了使用分子内猝灭探针进行细胞表面定位的表皮生长因子受体(EGFR)融合到 SNAP 标签的无洗涤标记,以及直接定量细胞裂解物中的 SNAP 标记的β-微管蛋白。此外,我们还对 SNAP 标签的快速标记变体 SNAP(f)进行了表征,该变体对苯甲基鸟嘌呤底物的反应性提高了十倍。呈现的数据表明,SNAP(f)和荧光底物的组合大大降低了标记和成像应用的荧光背景。这种方法能够在活细胞中高度敏感地研究蛋白质动力学的时空变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c22d/3213346/2bdf79cdf46c/cbic0012-2217-f1.jpg

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