Shrive A K, Holden D, Myles D A, Greenhough T J
Department of Physics, Keele University, Staffordshire, England.
Acta Crystallogr D Biol Crystallogr. 1996 Nov 1;52(Pt 6):1049-57. doi: 10.1107/S0907444996008311.
The pentameric structure of C-reactive proteins (CRP) has been derived by a combination of automated and manual molecular-replacement techniques. The method is generally applicable to other multimeric assemblies. The highly homologous human serum amyloid P component (hSAP) structure fails to provide a pentameric molecular-replacement solution for CRP. In the absence of a significant signal from an individual protomer, the hSAP structure has been manually modified in terms of protomer assembly to provide the true pentameric model of CRP. The CRP protomers are rotated or twisted by 14 degrees about an axis, through the protomer centre, which is approximately perpendicular to the pentamer radius and the molecular fivefold axis. The results demonstrate clearly that protomers with very similar folds arising from high sequence homology need not necessarily be assembled together in the same way although the symmetry of the resulting oligomer may be maintained. In a curious twist the CRP structure which provided the general CRP model remains unsolved, while the model itself has so far provided the solution of two other CRP structures.
C反应蛋白(CRP)的五聚体结构是通过自动和手动分子置换技术相结合推导出来的。该方法通常适用于其他多聚体组装体。高度同源的人血清淀粉样蛋白P成分(hSAP)结构未能为CRP提供五聚体分子置换解决方案。在没有来自单个原体的显著信号的情况下,hSAP结构已在原体组装方面进行了人工修改,以提供CRP的真实五聚体模型。CRP原体围绕一条穿过原体中心的轴旋转或扭曲14度,该轴大致垂直于五聚体半径和分子五重轴。结果清楚地表明,尽管所得寡聚体的对称性可能得以维持,但由于高度序列同源性而具有非常相似折叠的原体不一定以相同方式组装在一起。奇怪的是,提供通用CRP模型的CRP结构仍未解决,而该模型本身迄今为止已为另外两种CRP结构提供了解决方案。