Kuhlmann Sonja I, Terwisscha van Scheltinga Anke C, Bienert Ralf, Kunte Hans-Jörg, Ziegler Christine
Department of Structural Biology, Max-Planck-Institute of Biophysics, Max-von-Laue-Strasse 3, 60438 Frankfurt am Main, Germany.
Biochemistry. 2008 Sep 9;47(36):9475-85. doi: 10.1021/bi8006719. Epub 2008 Aug 15.
TeaABC from the moderate halophilic bacterium Halomonas elongata belongs to the tripartite ATP-independent periplasmic transporters (TRAP-T), a family of secondary transporters functioning in conjunction with periplasmic substrate binding proteins. TeaABC facilitates the uptake of the compatible solutes ectoine and hydroxyectoine that are accumulated in the cytoplasm under hyperosmotic stress to protect the cell from dehydration. TeaABC is the only known TRAP-T activated by osmotic stress. Currently, our knowledge on the osmoregulated compatible solute transporter is limited to ABC transporters or conventional secondary transporters. Therefore, this study presents the first detailed analysis of the molecular mechanisms underlying substrate recognition of the substrate binding protein of an osmoregulated TRAP-T. In the present study we were able to demonstrate by isothermal titration calorimetry measurements that TeaA is a high-affinity ectoine binding protein ( K d = 0.19 microM) that also has a significant but somewhat lower affinity to hydroxyectoine ( K d = 3.8 microM). Furthermore, we present the structure of TeaA in complex with ectoine at a resolution of 1.55 A and hydroxyectoine at a resolution of 1.80 A. Analysis of the TeaA binding pocket and comparison of its structure to other compatible solute binding proteins from ABC transporters reveal common principles in compatible solute binding but also significant differences like the solvent-mediated specific binding of ectoine to TeaA.
来自中度嗜盐细菌嗜盐栖热菌的TeaABC属于不依赖ATP的三方周质转运蛋白(TRAP-T),这是一类与周质底物结合蛋白协同发挥作用的次级转运蛋白家族。TeaABC促进相容性溶质四氢嘧啶和羟基四氢嘧啶的摄取,这些溶质在高渗胁迫下积累在细胞质中以保护细胞免受脱水影响。TeaABC是唯一已知的受渗透胁迫激活的TRAP-T。目前,我们对渗透调节的相容性溶质转运蛋白的了解仅限于ABC转运蛋白或传统的次级转运蛋白。因此,本研究首次详细分析了渗透调节的TRAP-T底物结合蛋白底物识别的分子机制。在本研究中,我们通过等温滴定量热法测量能够证明TeaA是一种高亲和力的四氢嘧啶结合蛋白(Kd = 0.19微摩尔),它对羟基四氢嘧啶也有显著但稍低的亲和力(Kd = 3.8微摩尔)。此外,我们展示了TeaA与四氢嘧啶复合物的结构,分辨率为1.55埃,以及与羟基四氢嘧啶复合物的结构,分辨率为1.80埃。对TeaA结合口袋的分析以及将其结构与ABC转运蛋白的其他相容性溶质结合蛋白进行比较,揭示了相容性溶质结合的共同原则,但也存在显著差异,如四氢嘧啶通过溶剂介导与TeaA特异性结合。