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结构、生物信息学和体内分析两种梅毒密螺旋体脂蛋白揭示了一种独特的 TRAP 转运体。

Structural, bioinformatic, and in vivo analyses of two Treponema pallidum lipoproteins reveal a unique TRAP transporter.

机构信息

Department of Microbiology, The University of Texas Southwestern Medical Center at Dallas, 5323 Harry Hines Boulevard, Dallas, TX 75390, USA.

出版信息

J Mol Biol. 2012 Mar 9;416(5):678-96. doi: 10.1016/j.jmb.2012.01.015. Epub 2012 Jan 27.

Abstract

Treponema pallidum, the bacterial agent of syphilis, is predicted to encode one tripartite ATP-independent periplasmic transporter (TRAP-T). TRAP-Ts typically employ a periplasmic substrate-binding protein (SBP) to deliver the cognate ligand to the transmembrane symporter. Herein, we demonstrate that the genes encoding the putative TRAP-T components from T. pallidum, tp0957 (the SBP), and tp0958 (the symporter), are in an operon with an uncharacterized third gene, tp0956. We determined the crystal structure of recombinant Tp0956; the protein is trimeric and perforated by a pore. Part of Tp0956 forms an assembly similar to those of "tetratricopeptide repeat" (TPR) motifs. The crystal structure of recombinant Tp0957 was also determined; like the SBPs of other TRAP-Ts, there are two lobes separated by a cleft. In these other SBPs, the cleft binds a negatively charged ligand. However, the cleft of Tp0957 has a strikingly hydrophobic chemical composition, indicating that its ligand may be substantially different and likely hydrophobic. Analytical ultracentrifugation of the recombinant versions of Tp0956 and Tp0957 established that these proteins associate avidly. This unprecedented interaction was confirmed for the native molecules using in vivo cross-linking experiments. Finally, bioinformatic analyses suggested that this transporter exemplifies a new subfamily of TPATs (TPR-protein-associated TRAP-Ts) that require the action of a TPR-containing accessory protein for the periplasmic transport of a potentially hydrophobic ligand(s).

摘要

梅毒螺旋体(Treponema pallidum)是梅毒的细菌病原体,据预测其编码一种三部分非依赖 ATP 的周质易位子转运体(TRAP-T)。TRAP-Ts 通常采用周质配体结合蛋白(SBP)将同源配体递送给跨膜转运体。在此,我们证明了来自梅毒螺旋体的假定 TRAP-T 成分的基因,tp0957(SBP)和 tp0958(转运体),与一个未鉴定的第三个基因 tp0956 位于一个操纵子中。我们测定了重组 Tp0956 的晶体结构;该蛋白是三聚体,由一个孔穿孔。Tp0956 的一部分形成类似于“四肽重复”(TPR)基序的组装。还测定了重组 Tp0957 的晶体结构;与其他 TRAP-Ts 的 SBP 一样,有两个叶瓣由裂隙分开。在其他 SBP 中,裂隙结合带负电荷的配体。然而,Tp0957 的裂隙具有明显疏水性的化学组成,表明其配体可能大不相同,可能是疏水性的。重组 Tp0956 和 Tp0957 的分析超速离心实验确立了这些蛋白质强烈地相互作用。使用体内交联实验证实了这种前所未有的相互作用适用于天然分子。最后,生物信息学分析表明,这种转运体是 TPR 蛋白相关 TRAP-Ts(TPR-protein-associated TRAP-Ts)的一个新亚家族的范例,该亚家族需要含有 TPR 的辅助蛋白的作用才能进行潜在疏水性配体的周质转运。

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