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沙眼衣原体特异性二糖α-Kdo-(2→8)-α-Kdo-(2→O)-烯丙基在水溶液中及与单克隆抗体结合时的构象分析:分子间转移核Overhauser效应的观测

Conformational analysis of a Chlamydia-specific disaccharide alpha-Kdo-(2-->8)-alpha-Kdo-(2-->O)-allyl in aqueous solution and bound to a monoclonal antibody: observation of intermolecular transfer NOEs.

作者信息

Sokolowski T, Haselhorst T, Scheffler K, Weisemann R, Kosma P, Brade H, Brade L, Peters T

机构信息

Institut für Chemie, Medizinische Universität Lübeck, Germany.

出版信息

J Biomol NMR. 1998 Jul;12(1):123-33. doi: 10.1023/a:1016047602190.

Abstract

The disaccharide alpha-Kdo-(2-->8)-alpha-Kdo (Kdo: 3-deoxy-D-manno-oct-2-ulosonic acid) represents a genus-specific epitope of the lipopolysaccharide of the obligate intracellular human pathogen Chlamydia. The conformation of the synthetically derived disaccharide alpha-Kdo-(2-->8)-alpha-Kdo-(2-->O)-allyl was studied in aqueous solution, and complexed to a monoclonal antibody S25-2. Various NMR experiments based on the detection of NOEs (or transfer NOEs) and ROEs (or transfer ROEs) were performed. A major problem was the extensive overlap of almost all 1H NMR signals of alpha-Kdo-(2-->8)-alpha-Kdo-(2-->O)-allyl. To overcome this difficulty, HMQC-NOESY and HMQC-trNOESY experiments were employed. Spin diffusion effects were identified using trROESY experiments, QUIET-trNOESY experiments and MINSY experiments. It was found that protein protons contribute to the observed spin diffusion effects. At 800 MHz, intermolecular trNOEs were observed between ligand protons and aromatic protons in the antibody binding site. From NMR experiments and Metropolis Monte Carlo simulations, it was concluded that alpha-Kdo-(2-->8)-alpha-Kdo-(2-->O)-allyl in aqueous solution exists as a complex conformational mixture. Upon binding to the monoclonal antibody S25-2, only a limited range of conformations is available to alpha-Kdo-(2-->8)-alpha-Kdo-(2-->O)-allyl. These possible bound conformations were derived from a distance geometry analysis using transfer NOEs as experimental constraints. It is clear that a conformation is selected which lies within a part of the conformational space that is highly populated in solution. This conformational space also includes the conformation found in the crystal structure. Our results provide a basis for modeling studies of the antibody-disaccharide complex.

摘要

二糖α-Kdo-(2→8)-α-Kdo(Kdo:3-脱氧-D-甘露-辛-2-酮糖酸)是专性胞内人类病原体衣原体脂多糖的属特异性表位。对合成得到的二糖α-Kdo-(2→8)-α-Kdo-(2→O)-烯丙基在水溶液中的构象进行了研究,并使其与单克隆抗体S25-2形成复合物。基于检测NOE(或转移NOE)和ROE(或转移ROE)进行了各种核磁共振实验。一个主要问题是α-Kdo-(2→8)-α-Kdo-(2→O)-烯丙基几乎所有的1H NMR信号都存在广泛重叠。为克服这一困难,采用了HMQC-NOESY和HMQC-trNOESY实验。利用trROESY实验、QUIET-trNOESY实验和MINSY实验识别了自旋扩散效应。发现蛋白质质子对观察到的自旋扩散效应有贡献。在800 MHz时,在抗体结合位点的配体质子与芳族质子之间观察到分子间trNOE。从核磁共振实验和Metropolis蒙特卡罗模拟得出结论,α-Kdo-(2→8)-α-Kdo-(2→O)-烯丙基在水溶液中以复杂的构象混合物形式存在。与单克隆抗体S25-2结合后,α-Kdo-(2→8)-α-Kdo-(2→O)-烯丙基只有有限的构象范围可供选择。这些可能的结合构象是通过使用转移NOE作为实验约束的距离几何分析得出的。显然,选择的构象位于溶液中高度占据的构象空间的一部分内。这个构象空间还包括晶体结构中发现的构象。我们的结果为抗体-二糖复合物的建模研究提供了基础。

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