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Tp38(TpMglB-2)脂蛋白以与梅毒螺旋体中受体功能一致的方式结合葡萄糖。

The Tp38 (TpMglB-2) lipoprotein binds glucose in a manner consistent with receptor function in Treponema pallidum.

作者信息

Deka Ranjit K, Goldberg Martin S, Hagman Kayla E, Norgard Michael V

机构信息

Department of Microbiology, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.

出版信息

J Bacteriol. 2004 Apr;186(8):2303-8. doi: 10.1128/JB.186.8.2303-2308.2004.

Abstract

A 38-kDa lipoprotein of Treponema pallidum (Tp38) was predicted to be a periplasmic sugar-binding protein based on its sequence similarity to the glucose/galactose-binding (MglB) protein of Escherichia coli (P. S. Becker, D. R. Akins, J. D. Radolf, and M. V. Norgard, Infect. Immun. 62:1381-1391, 1994). Inasmuch as glucose is believed to be the principal, if not sole, carbon and energy source for T. pallidum and is readily available to the spirochete during its obligate infection of humans, we hypothesized that Tp38 may serve as the organism's requisite glucose receptor. For the present study, a nonacylated recombinant form of Tp38 was coexpressed with GroES and GroEL in E. coli to facilitate the isolation of soluble, properly folded Tp38. The highly sensitive method of intrinsic fluorescence spectroscopy, predicated on the manner in which tryptophan residues reside and move within protein microenvironments, was then used to assess sugar binding to Tp38. The intrinsic fluorescence of Tp38 was essentially unaltered when it was exposed to D-mannose, D-fucose, D-ribose, L-glucose, or L-galactose, but it changed markedly in the presence of D-glucose, and to a lesser extent, D-galactose, indicating binding. The K(d) values for D-glucose and D-galactose binding to Tp38 were 152.2 +/- 20.73 nM and 251.2 +/- 55.25 nM, respectively. Site-directed mutagenesis of Trp-145, a residue postulated to contribute to the sugar-binding pocket in a manner akin to the essential Trp-183 in E. coli MglB, abolished Tp38's conformational change in response to D-glucose. The combined data are consistent with Tp38 serving as a glucose receptor for T. pallidum. These findings potentially have important implications for syphilis pathogenesis, particularly as they may pertain to glucose-mediated chemotactic responses by T. pallidum.

摘要

基于梅毒螺旋体的一种38 kDa脂蛋白(Tp38)与大肠杆菌的葡萄糖/半乳糖结合蛋白(MglB)的序列相似性,预计它是一种周质糖结合蛋白(P. S. 贝克尔、D. R. 阿金斯、J. D. 拉多尔夫和M. V. 诺加德,《感染与免疫》62:1381 - 1391, 1994)。由于葡萄糖被认为是梅毒螺旋体主要的(如果不是唯一的)碳源和能源,并且在梅毒螺旋体专性感染人类期间,螺旋体能够轻易获取葡萄糖,我们推测Tp38可能是该生物体必需的葡萄糖受体。在本研究中,一种非酰化的重组Tp38与GroES和GroEL在大肠杆菌中共表达,以利于分离出可溶的、正确折叠的Tp38。然后,基于色氨酸残基在蛋白质微环境中的存在和移动方式的高灵敏度内源荧光光谱法,被用于评估糖与Tp38的结合。当Tp38暴露于D - 甘露糖、D - 岩藻糖、D - 核糖、L - 葡萄糖或L - 半乳糖时,其内源荧光基本未改变,但在D - 葡萄糖存在时显著变化,在较小程度上,D - 半乳糖存在时也有变化,表明发生了结合。D - 葡萄糖和D - 半乳糖与Tp38结合的解离常数(K(d))值分别为152.2±20.73 nM和251.2±55.25 nM。对Trp - 145进行定点诱变,该残基被假定以类似于大肠杆菌MglB中必需的Trp - 183的方式对糖结合口袋有贡献,结果消除了Tp38对D - 葡萄糖的构象变化。综合数据表明Tp38作为梅毒螺旋体的葡萄糖受体。这些发现可能对梅毒发病机制具有重要意义,特别是它们可能与梅毒螺旋体的葡萄糖介导的趋化反应有关。

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