Vinckier A, Gervasoni P, Zaugg F, Ziegler U, Lindner P, Groscurth P, Plückthun A, Semenza G
Department of Biochemistry, Swiss Federal Institute of Technology, ETH Zentrum, Zürich.
Biophys J. 1998 Jun;74(6):3256-63. doi: 10.1016/S0006-3495(98)78032-4.
The structure of the Escherichia coli chaperonin GroEL has been investigated by tapping-mode atomic force microscopy (AFM) under liquid. High-resolution images can be obtained, which show the up-right position of GroEL adsorbed on mica with the substrate-binding site on top. Because of this orientation, the interaction between GroEL and two substrate proteins, citrate synthase from Saccharomyces cerevisiae with a destabilizing Gly-->Ala mutation and RTEM beta-lactamase from Escherichia coli with two Cys-->Ala mutations, could be studied by force spectroscopy under different conditions. The results show that the interaction force decreases in the presence of ATP (but not of ATPgammaS) and that the force is smaller for native-like proteins than for the fully denatured ones. It also demonstrates that the interaction energy with GroEL increases with increasing molecular weight. By measuring the interaction force changes between the chaperonin and the two different substrate proteins, we could specifically detect GroEL conformational changes upon nucleotide binding.
利用液体环境下的轻敲模式原子力显微镜(AFM)对大肠杆菌伴侣蛋白GroEL的结构进行了研究。可以获得高分辨率图像,这些图像显示了吸附在云母上的GroEL的直立位置,其底物结合位点位于顶部。由于这种取向,可以通过在不同条件下的力谱研究GroEL与两种底物蛋白之间的相互作用,这两种底物蛋白分别是来自酿酒酵母的具有不稳定Gly→Ala突变的柠檬酸合酶以及来自大肠杆菌的具有两个Cys→Ala突变的RTEMβ-内酰胺酶。结果表明,在ATP(而非ATPγS)存在的情况下,相互作用力会降低,并且与天然样蛋白的作用力小于与完全变性蛋白的作用力。这也表明,与GroEL的相互作用能随分子量的增加而增加。通过测量伴侣蛋白与两种不同底物蛋白之间的相互作用力变化,我们能够特异性地检测核苷酸结合后GroEL的构象变化。