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利用突变β-内酰胺酶标签技术在活细胞中进行多色蛋白质标记。

Multicolor protein labeling in living cells using mutant β-lactamase-tag technology.

机构信息

Division of Advanced Science and Biotechnology, Graduate School of Engineering, and Immunology Frontier Research Center, Osaka University, Osaka, 565-0871, Japan.

出版信息

Bioconjug Chem. 2010 Dec 15;21(12):2320-6. doi: 10.1021/bc100333k. Epub 2010 Oct 20.

Abstract

Protein labeling techniques using small molecule probes have become important as practical alternatives to the use of fluorescent proteins (FPs) in live cell imaging. These labeling techniques can be applied to more sophisticated fluorescence imaging studies such as pulse-chase imaging. Previously, we reported a novel protein labeling system based on the combination of a mutant β-lactamase (BL-tag) with coumarin-derivatized probes and its application to specific protein labeling on cell membranes. In this paper, we demonstrated the broad applicability of our BL-tag technology to live cell imaging by the development of a series of fluorescence labeling probes for this technology, and the examination of the functions of target proteins. These new probes have a fluorescein or rhodamine chromophore, each of which provides enhanced photophysical properties relative to coumarins for the purpose of cellular imaging. These probes were used to specifically label the BL-tag protein and could be used with other small molecule fluorescent probes. Simultaneous labeling using our new probes with another protein labeling technology was found to be effective. In addition, it was also confirmed that this technology has a low interference with respect to the functions of target proteins in comparison to GFP. Highly specific and fast covalent labeling properties of this labeling technology is expected to provide robust tools for investigating protein functions in living cells, and future applications can be improved by combining the BL-tag technology with conventional imaging techniques. The combination of probe synthesis and molecular biology techniques provides the advantages of both techniques and can enable the design of experiments that cannot currently be performed using existing tools.

摘要

利用小分子探针进行蛋白质标记已成为替代活细胞荧光成像中使用荧光蛋白(FPs)的重要方法。这些标记技术可应用于更复杂的荧光成像研究,如脉冲追踪成像。先前,我们报道了一种基于突变β-内酰胺酶(BL-tag)与香豆素衍生探针结合的新型蛋白质标记系统及其在细胞膜上特定蛋白质标记中的应用。在本文中,我们通过开发一系列用于该技术的荧光标记探针,并研究靶蛋白的功能,证明了我们的 BL-tag 技术在活细胞成像中的广泛适用性。这些新探针具有荧光素或罗丹明发色团,每个发色团都为细胞成像提供了相对于香豆素增强的光物理性质。这些探针可用于特异性标记 BL-tag 蛋白,并可与其他小分子荧光探针一起使用。我们发现,使用这些新探针与另一种蛋白质标记技术同时进行标记是有效的。此外,与 GFP 相比,该技术对靶蛋白功能的干扰也较小,这一点也得到了证实。与传统成像技术相结合,这种标记技术具有高度特异性和快速的共价标记特性,有望为研究活细胞中的蛋白质功能提供强大的工具。探针合成和分子生物学技术的结合提供了两种技术的优势,并能够设计目前使用现有工具无法进行的实验。

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