Pfleger Kevin D G
Western Australian Institute for Medical Research and Centre for Medical Research, University of Western Australia, Perth, Australia.
Methods Mol Biol. 2009;574:173-83. doi: 10.1007/978-1-60327-321-3_14.
Knowledge of how and when proteins interact in living cells is fundamental to our understanding of cellular biology, and bioluminescence resonance energy transfer (BRET) provides an increasingly popular mechanism for studying these interactions in real time. The technique utilises heterologously expressed fusion proteins linking a bioluminescent donor or complementary acceptor fluorophore to proteins of interest. Resonance energy transfer between these fusion proteins is then detected when they are in close proximity, indicative of association either directly or as part of a complex. BRET is particularly useful for real-time monitoring of ligand-modulated interactions as dynamic changes in protein complex assembly can be observed in a live cell environment.
了解蛋白质在活细胞中如何以及何时相互作用是我们理解细胞生物学的基础,而生物发光共振能量转移(BRET)为实时研究这些相互作用提供了一种越来越受欢迎的机制。该技术利用异源表达的融合蛋白,将生物发光供体或互补受体荧光团与感兴趣的蛋白质连接起来。当这些融合蛋白紧密靠近时,就会检测到它们之间的共振能量转移,这表明它们直接结合或作为复合物的一部分结合。BRET对于实时监测配体调节的相互作用特别有用,因为可以在活细胞环境中观察到蛋白质复合物组装的动态变化。