Horn Carsten, Sohn-Bösser Linda, Breed Jason, Welte Wolfram, Schmitt Lutz, Bremer Erhard
Institute of Biochemistry, Heinrich Heine University Duesseldorf, Universitaetsstr. 1, 40225 Duesseldorf, Germany.
J Mol Biol. 2006 Mar 24;357(2):592-606. doi: 10.1016/j.jmb.2005.12.085. Epub 2006 Jan 13.
Compatible solutes play a decisive role in the defense of microorganisms against changes in temperature and increases in osmolarity in their natural habitats. In Bacillus subtilis, the substrate-binding protein (SBP)-dependent ABC-transporter OpuA serves for the uptake of the compatible solutes glycine betaine (GB) and proline betaine (PB). Here, we report the determinants of compatible solute binding by OpuAC, the SBP of the OpuA transporter, by equilibrium binding studies and X-ray crystallography. The affinity of OpuAC/GB and OpuAC/PB complexes were analyzed by intrinsic tryptophan fluorescence and the K(D) values were determined to be 17(+/-1)microM for GB and 295(+/-27)microM for PB, respectively. The structures of OpuAC in complex with GB or PB were solved at 2.0 A and 2.8 A, respectively, and show an SBP-typical class II fold. The ligand-binding pocket is formed by three tryptophan residues arranged in a prism-like geometry suitable to coordinate the positive charge of the trimethyl ammonium group of GB and the dimethyl ammonium group of PB by cation-pi interactions and by hydrogen bonds with the carboxylate moiety of the ligand. Structural differences between the OpuAC/GB and OpuAC/PB complexes occur within the ligand-binding pocket as well as across the domain-domain interface. These differences provide a structural framework to explain the drastic differences in affinity of the OpuAC/GB and OpuAC/PB complexes. A sequence comparison with putative SBP specific for compatible solutes reveals the presence of three distinct families for which the crystal structure of OpuAC might serve as a suitable template to predict the structures of these putative compatible solute-binding proteins.
相容性溶质在微生物抵御其天然生境中温度变化和渗透压升高的过程中起着决定性作用。在枯草芽孢杆菌中,依赖底物结合蛋白(SBP)的ABC转运蛋白OpuA负责摄取相容性溶质甘氨酸甜菜碱(GB)和脯氨酸甜菜碱(PB)。在此,我们通过平衡结合研究和X射线晶体学报告了OpuA转运蛋白的SBP即OpuAC对相容性溶质结合的决定因素。通过内源色氨酸荧光分析了OpuAC/GB和OpuAC/PB复合物的亲和力,GB和PB的解离常数(K(D))值分别确定为17(±1)μM和295(±27)μM。分别在2.0 Å和2.8 Å分辨率下解析了与GB或PB结合的OpuAC的结构,其显示出SBP典型的II类折叠。配体结合口袋由三个色氨酸残基形成,它们以棱柱状几何结构排列,适合通过阳离子-π相互作用以及与配体羧酸盐部分的氢键来配位GB的三甲基铵基团和PB的二甲基铵基团的正电荷。OpuAC/GB和OpuAC/PB复合物之间的结构差异既存在于配体结合口袋内,也存在于结构域-结构域界面。这些差异提供了一个结构框架来解释OpuAC/GB和OpuAC/PB复合物亲和力的巨大差异。与推测的相容性溶质特异性SBP进行序列比较,揭示了存在三个不同的家族,OpuAC的晶体结构可能作为合适的模板来预测这些推测的相容性溶质结合蛋白的结构。