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分辨率为1.8埃的小麦胚芽凝集素同工凝集素2晶体结构的优化。

Refinement of the crystal structure of wheat germ agglutinin isolectin 2 at 1.8 A resolution.

作者信息

Wright C S

出版信息

J Mol Biol. 1987 Apr 5;194(3):501-29. doi: 10.1016/0022-2836(87)90678-4.

Abstract

The crystal structure of wheat germ agglutinin isolectin 2 has been refined by the restrained least-squares method of Hendrickson & Konnert (1980). The asymmetric unit of the C2 crystals contains two chemically identical promoters related by a non-crystallographic 2-fold screw operation. A total of 2290 protein atoms and 186 ordered water sites refined to a final R-factor of 0.179 and an average B-value of 21.6 A2, using 54% (15,601) of the total possible number of reflections in the resolution range 8 to 1.8 A with Fo greater than 3 sigma (Fo). The final model conforms to stereochemically correct bond distances and angles with root-mean-square (r.m.s.) values of 0.018 A and 3.3 degrees, respectively. Accuracy of this model is estimated to be 0.20 A on the basis of a Luzzati plot. Main-chain atomic positions in the two independent promoters, designated I and II, agree with an r.m.s. deviation of 0.30 A (0.58 A for all atoms), indicating identical backbone conformation. The largest discrepancies are seen at flexible surface residues. One error was detected in the amino acid sequence at position 41 (Ser), which refined satisfactorily as a Trp. Loss of electron density for residue A171 during the course of refinement suggests either disorder or absence of this C-terminal residue. The conformation of the polypeptide chain, which is folded into four homologous 43-residue domains (A, B, C and D), was analyzed in terms of dihedral angles, backbone hydrogen bond lengths and CA-atom positions. The four domains were found to be very similar according to all these criteria and superposition of their CA-atoms yielded r.m.s. distances ranging from 0.36 to 0.72 A for the six possible comparisons [corrected]. Large deviations (greater than 1.0 A) are only seen in the five-residue segments that link adjacent domains and at the N and C termini. Refinement has also allowed critical examination of each of the two unique sugar binding sites, referred to as "primary" and "secondary" sites, in different lattice environments. While the essential tyrosyl side-chain in each of these sites (Y73, Y159) assumes precise orientation for optimum hydrophobic contact with the N-acetyl methyl group of the sugar ligand, side-chains involved in hydrogen bonds (S62, E115; and S148, D29) were found to be relatively flexible and able to adapt their conformation to changes in environment. Ordered water structure present in these binding sites is not completely analogous in the different environments.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

麦胚凝集素同工凝集素2的晶体结构已通过Hendrickson和Konnert(1980)的约束最小二乘法进行了优化。C2晶体的不对称单元包含两个化学性质相同的启动子,它们通过非晶体学的2次螺旋操作相关联。总共2290个蛋白质原子和186个有序水位点被优化至最终R因子为0.179,平均B值为21.6 Ų,使用了分辨率范围为8至1.8 Å且Fₒ大于3σ(Fₒ)的总可能反射数的54%(15,601个)。最终模型符合立体化学上正确的键长和键角,均方根(r.m.s.)值分别为0.018 Å和3.3度。根据Luzzati图估计该模型的精度为0.20 Å。在两个独立的启动子(分别命名为I和II)中,主链原子位置的均方根偏差为0.30 Å(所有原子为0.58 Å),表明主链构象相同。最大的差异出现在柔性表面残基处。在氨基酸序列的第41位(Ser)检测到一个错误,该位点优化为Trp时令人满意。在优化过程中,残基A171的电子密度损失表明该C末端残基无序或不存在。将多肽链折叠成四个同源的43个残基结构域(A、B、C和D),并根据二面角、主链氢键长度和Cα原子位置对其构象进行了分析。根据所有这些标准,发现这四个结构域非常相似,对它们的Cα原子进行叠加,六种可能比较的均方根距离范围为0.36至0.72 Å[校正后]。仅在连接相邻结构域的五个残基片段以及N和C末端观察到较大偏差(大于1.0 Å)。优化还允许在不同晶格环境中对两个独特的糖结合位点(称为“主要”和“次要”位点)进行严格检查。虽然这些位点(Y73、Y159)中每个位点的必需酪氨酸侧链都具有精确的取向,以便与糖配体的N - 乙酰甲基进行最佳疏水接触,但发现参与氢键的侧链(S62、E115;以及S148、D29)相对灵活,能够使其构象适应环境变化。这些结合位点中存在的有序水结构在不同环境中并不完全相似。(摘要截断于400字)

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