Epp O, Lattman E E, Schiffer M, Huber R, Palm W
Biochemistry. 1975 Nov 4;14(22):4943-52. doi: 10.1021/bi00693a025.
The structure of the variable portions of a K-type Bence-Jones protein REI forming a dimer has been determined by X-ray diffraction to a resolution of 2.0 A. The structure has been refined using a constrained crystallographic refinement procedure. The final R value is 0.24 for 15000 significantly measured reflections; the estimated standard deviation of atomic positions is 0.09 A. A more objective assessment of the error in the atomic positions is possible by comparing the two independently refined monomers. The mean deviation of main-chain atoms of the two chains in internal segments in 0.22 A, of main-chain dihedral angles 6.3 degrees for these segments. The unrefined molecular structure of the VREI dimer has been published (Epp, O., Colman, P., Fehlhammer, H., Bode, W., Schiffer, M., Huber, R., and Palm, W. (1974), Eur. J. Biochem. 45, 513). Now a detailed analysis is presented in terms of hydrogen bonds and conformational angles. Secondary structural elements (antiparallel beta structure, reverse turns) are defined. A more precise atomic arrangement of the amino acid residues forming the contact region and the hapten binding site is given as well as the localization of solvent molecules. Two cis-prolines (Pro-8 and Pro-95) were detected. The intrachain disulfide bridge (Cys-23-Cys-88) occurs statistically in two alternative conformations. The structure suggests reasons for strong conservation of several amino acid residues. The knowledge of the refined molecular structure enables crystal structure analyses of related molecules to be made by Patterson search techniques. The calculated phases based on the refined structure are much improved compared to isomorphous phases. Therefore the effects of hapten binding on the molecular structure can be analyzed by the difference Fourier technique with more reliability. Hapten binding studies have been started.
已通过X射线衍射确定了形成二聚体的K型本斯-琼斯蛋白REI可变部分的结构,分辨率为2.0埃。该结构已使用约束晶体学精修程序进行了精修。对于15000个有意义的测量反射,最终R值为0.24;原子位置的估计标准偏差为0.09埃。通过比较两个独立精修的单体,可以对原子位置的误差进行更客观的评估。两条链内部片段中主链原子的平均偏差为0.22埃,这些片段的主链二面角为6.3度。VREI二聚体的未精修分子结构已发表(埃普,O.,科尔曼,P.,费尔哈默,H.,博德,W.,希弗,M.,胡贝尔,R.,和帕尔姆,W.(1974年),《欧洲生物化学杂志》45,513)。现在从氢键和构象角方面进行了详细分析。定义了二级结构元件(反平行β结构、反向转角)。给出了形成接触区域和半抗原结合位点的氨基酸残基更精确的原子排列以及溶剂分子的定位。检测到两个顺式脯氨酸(Pro-8和Pro-95)。链内二硫键(Cys-23-Cys-88)在统计学上以两种替代构象出现。该结构揭示了几个氨基酸残基高度保守的原因。精修分子结构的知识使得能够通过帕特森搜索技术对相关分子进行晶体结构分析。与同晶型相位相比,基于精修结构计算的相位有了很大改进。因此,可以更可靠地通过差值傅里叶技术分析半抗原结合对分子结构的影响。半抗原结合研究已经开始。