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组织因子与人源化Fab D3h44复合物以及游离人源化Fab D3h44的1.85埃分辨率晶体结构:重新审视抗原结合位点的溶剂化作用

The 1.85 A resolution crystal structures of tissue factor in complex with humanized Fab D3h44 and of free humanized Fab D3h44: revisiting the solvation of antigen combining sites.

作者信息

Faelber K, Kirchhofer D, Presta L, Kelley R F, Muller Y A

机构信息

Forschungsgruppe Kristallographie, Max-Delbrück-Centrum für Molekulare Medizin, Robert-Rössle-Str.10, 13092 Berlin, Germany.

出版信息

J Mol Biol. 2001 Oct 12;313(1):83-97. doi: 10.1006/jmbi.2001.5036.

Abstract

The outstanding importance of the antigen-antibody recognition process for the survival and defence strategy of higher organisms is in sharp contrast to the limited high resolution structural data available on antibody-antigen pairs with antigenic proteins. The limitation is the most severe for structural data not restricted to the antigen-antibody complex but extending to the uncomplexed antigen and antibody. We report the crystal structure of the complex between tissue factor (TF) and the humanized Fab fragment D3h44 at a resolution of 1.85 A together with the structure of uncomplexed D3h44 at the same resolution. In conjunction with the previously reported 1.7 A crystal structure of uncomplexed TF, a unique opportunity is generated to explore details of the recognition process. The TF.D3h44 interface is characterised by a high number of polar interactions, including as may as 46 solvent molecules. Conformational changes upon complex formation are very small and almost exclusively limited to the reorientation of side-chains. The binding epitope is in complete agreement with earlier mutagenesis experiments. A revaluation of two other antibody-antigen pairs reported at similar resolutions, shows that all these complexes are very similar with respect to the solvation of the interface, the number of solvent positions conserved in the uncomplexed and complexed proteins and the number of water molecules expelled from the surface and replaced by hydrophilic atoms from the binding partner upon complex formation. A strategy is proposed on how to exploit this high resolution structural data to guide the affinity maturation of humanised antibodies.

摘要

抗原 - 抗体识别过程对于高等生物的生存和防御策略具有极其重要的意义,这与现有的关于抗原蛋白的抗体 - 抗原对的高分辨率结构数据有限形成了鲜明对比。对于不限于抗原 - 抗体复合物,而是扩展到未复合的抗原和抗体的结构数据,这种限制最为严重。我们报道了组织因子(TF)与人源化Fab片段D3h44之间复合物的晶体结构,分辨率为1.85 Å,同时还报道了相同分辨率下未复合的D3h44的结构。结合先前报道的未复合TF的1.7 Å晶体结构,产生了一个独特的机会来探索识别过程的细节。TF.D3h44界面的特征是大量的极性相互作用,包括多达46个溶剂分子。复合物形成时的构象变化非常小,几乎完全限于侧链的重新定向。结合表位与早期的诱变实验完全一致。对以类似分辨率报道的另外两对抗体 - 抗原对的重新评估表明,所有这些复合物在界面溶剂化、未复合和复合蛋白质中保守的溶剂位置数量以及复合物形成时从表面排出并被结合伴侣的亲水性原子取代的水分子数量方面都非常相似。提出了一种关于如何利用这些高分辨率结构数据来指导人源化抗体亲和力成熟的策略。

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