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活细胞中膜蛋白的可逆位点选择性标记

Reversible site-selective labeling of membrane proteins in live cells.

作者信息

Guignet Emmanuel G, Hovius Ruud, Vogel Horst

出版信息

Nat Biotechnol. 2004 Apr;22(4):440-4. doi: 10.1038/nbt954. Epub 2004 Mar 21.

Abstract

Chemical and biological labeling is fundamental for the elucidation of the function of proteins within biochemical cellular networks. In particular, fluorescent probes allow detection of molecular interactions, mobility and conformational changes of proteins in live cells with high temporal and spatial resolution. We present a generic method to label proteins in vivo selectively, rapidly (seconds) and reversibly, with small molecular probes that can have a wide variety of properties. These probes comprise a chromophore and a metal-ion-chelating nitrilotriacetate (NTA) moiety, which binds reversibly and specifically to engineered oligohistidine sequences in proteins of interest. We demonstrate the feasibility of the approach by binding NTA-chromophore conjugates to a representative ligand-gated ion channel and G protein-coupled receptor, each containing a polyhistidine sequence. We investigated the ionotropic 5HT(3) serotonin receptor by fluorescence measurements to characterize in vivo the probe-receptor interactions, yielding information on structure and plasma membrane distribution of the receptor.

摘要

化学和生物标记对于阐明生化细胞网络中蛋白质的功能至关重要。特别是,荧光探针能够以高时空分辨率检测活细胞中蛋白质的分子相互作用、迁移率和构象变化。我们提出了一种通用方法,可使用具有多种特性的小分子探针在体内选择性、快速(数秒)且可逆地标记蛋白质。这些探针包含一个发色团和一个金属离子螯合的次氮基三乙酸(NTA)部分,该部分与目标蛋白质中工程化的寡组氨酸序列可逆且特异性地结合。我们通过将NTA - 发色团共轭物与代表性的配体门控离子通道和G蛋白偶联受体结合,证明了该方法的可行性,每个受体均含有一个多组氨酸序列。我们通过荧光测量研究了离子型5HT(3) 5-羟色胺受体,以在体内表征探针 - 受体相互作用,从而获得有关受体结构和质膜分布的信息。

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