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人Fc片段及其与金黄色葡萄球菌蛋白A的B片段复合物在2.9埃和2.8埃分辨率下的晶体学精修与原子模型。

Crystallographic refinement and atomic models of a human Fc fragment and its complex with fragment B of protein A from Staphylococcus aureus at 2.9- and 2.8-A resolution.

作者信息

Deisenhofer J

出版信息

Biochemistry. 1981 Apr 28;20(9):2361-70.

PMID:7236608
Abstract

The model of human Fc fragment was refined at 2.9-A resolution. Two different automated procedures for crystallographic refinement were used [Deisenhofer, J., & Steigemann, W. (1975) Acta Crystallogr., Sec. B B31, 238; Jack, A., & Levitt, M. (1978) Acta Crystallogr., Sect. A A34, 931]. The final R value is 0.22. The dimer of CH3 domains closely resembles the CH1-CL aggregate in Fab fragments. There is no contact between CH2 domains. The contact between CH2 and CH3 domains has about one-third of the size of the CH3-CH3 contact. The carbohydrate, a branched chain of nine hexose units, covers parts of the C-contact face of the CH2 domain, shielding hydrophobic residues on this surface. Six atoms of the carbohydrate are within hydrogen-bonding distance of atoms in the CH2 domain. Crystallographic refinement of the complex between Fc fragment and fragment B of protein A from Staphylococcus aureus reduced the R value of the model is 0.24. A major part of the structure of fragment B consists of two alpha helics; the rest of the polypeptide chain is folded irregularly. In the crystal, fragment B forms two contacts with Fc fragment molecules. Contact 1 involves residues from both helices of fragment B, and residues from the CH2 and CH3 domains of FC, and is predominantly hydrophobic. Contact 2 is smaller than contact 1. Residues from the second helix and adjacent residues of fragment B and residues only from the CH3 domain of Fc contribute to contact 2. The nature of contact 2 is mainly polar and includes a sulfate ion. There are strong arguments that contact 1 is the fragment B-Fc contact formed in solution under physiological conditions, while contact 2 is a crystal contact.

摘要

人Fc片段模型在2.9埃分辨率下进行了优化。使用了两种不同的晶体学优化自动化程序[戴森霍费尔,J.,& 施泰格曼,W.(1975年)《晶体学报》,B辑B31,238;杰克,A.,& 莱维特,M.(1978年)《晶体学报》,A辑A34,931]。最终的R值为0.22。CH3结构域的二聚体与Fab片段中的CH1 - CL聚集体非常相似。CH2结构域之间没有接触。CH2和CH3结构域之间的接触面积约为CH3 - CH3接触面积的三分之一。碳水化合物是由九个己糖单元组成的支链,覆盖了CH2结构域的C - 接触面的部分区域,屏蔽了该表面上的疏水残基。碳水化合物的六个原子与CH2结构域中的原子处于氢键距离内。金黄色葡萄球菌蛋白A的Fc片段与片段B之间复合物的晶体学优化使模型的R值降低到了0.24。片段B的结构主要部分由两个α螺旋组成;多肽链的其余部分折叠不规则。在晶体中,片段B与Fc片段分子形成两个接触点。接触点1涉及片段B的两个螺旋以及Fc的CH2和CH3结构域的残基,主要是疏水的。接触点2比接触点1小。片段B的第二个螺旋及其相邻残基以及仅来自Fc的CH3结构域的残基形成接触点2。接触点2的性质主要是极性的,包括一个硫酸根离子。有充分的理由认为,接触点1是在生理条件下溶液中形成的片段B - Fc接触,而接触点2是晶体接触。

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