Björkman A J, Binnie R A, Cole L B, Zhang H, Hermodson M A, Mowbray S L
Department of Molecular Biology, Swedish University of Agricultural Sciences, Uppsala.
J Biol Chem. 1994 Apr 15;269(15):11196-200.
The x-ray structure of a mutant (Gly72 to Asp) of the Escherichia coli ribose-binding protein with altered transport function has been solved and refined to 2.2-A resolution with a conventional R-factor (R-factor = [formula: see text]) of 16.0% and good stereochemistry. Comparison with the wild type ribose-binding protein shows that the structure is disturbed little at the actual mutation site, but quite appreciably in a neighboring loop. Changes in the surface of the protein at the site of mutation, however, seem to explain the functional effects. A corresponding mutation of the related glucose/galactose-binding protein has different structural and functional effects due to the different structural context of the mutation site in that protein. These results are consistent with the concept that these proteins have slightly different ways of interacting with the membrane components in transport and chemotaxis.
已解析出具有改变的转运功能的大肠杆菌核糖结合蛋白突变体(Gly72突变为Asp)的X射线结构,并将其精修至2.2埃分辨率,传统R因子(R因子 = [公式:见原文])为16.0%,且立体化学性质良好。与野生型核糖结合蛋白相比,该结构在实际突变位点处受干扰较小,但在相邻环中受到的干扰较为明显。然而,蛋白质突变位点处表面的变化似乎可以解释其功能效应。相关的葡萄糖/半乳糖结合蛋白的相应突变由于该蛋白中突变位点的结构背景不同而具有不同的结构和功能效应。这些结果与以下概念一致,即这些蛋白质在转运和趋化作用中与膜成分相互作用的方式略有不同。