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兵豆凝集素2.3埃分辨率的晶体结构测定与精修

Crystal structure determination and refinement at 2.3-A resolution of the lentil lectin.

作者信息

Loris R, Steyaert J, Maes D, Lisgarten J, Pickersgill R, Wyns L

机构信息

Laboratorium voor Ultrastructuur, Vrije Universiteit Brussel, Sint-Genesius-Rode, Belgium.

出版信息

Biochemistry. 1993 Aug 31;32(34):8772-81. doi: 10.1021/bi00085a007.

Abstract

We report on the X-ray structure determination of the orthorhombic crystal form of lentil lectin by molecular replacement using the pea lectin coordinates as a starting model. The structure was refined at 2.3-A resolution with a combination of molecular dynamics refinement and classical restrained least-squares refinement. The final R value for all data Fo > 1 sigma (Fo) between 7.0- and 2.3-A resolution is 0.164%, and deviations from ideal bond distances are 0.014 A. The C-terminus of the beta-chain proved to be 23 amino acids longer than found in previous studies. This together with several inconsistencies between the previously determined amino acid sequence and the observed electron density forced a redetermination of the amino acid sequence of the protein. The overall structure is very similar to that of pea lectin and isolectin I of Lathyrus ochrus, the most prominent deviations being confined to loop regions and the regions of intermolecular contact. The largest difference between the pea and lentil lectin monomers is situated in the loop region of amino acids 73-79 of the beta chain. There are no significant differences between the two crystallographic independent lentil lectin monomers in the asymmetric unit. The model includes 104 well-defined water molecules, of which a significant number have a counterpart in the pea lectin structure. As for the other legume lectins, each lentil lectin monomer contains one calcium ion in a highly conserved environment. On the contrary, the manganese binding sites are distorted with respect to the pea lectin and concanavalin A structures. The Asp beta 121 side chain apparently does not ligate the Mn2+ ion. This difference is consistent in both lentil lectin monomers and agrees with earlier solution studies. Possible implications for oligosaccharide binding are discussed.

摘要

我们报道了通过分子置换法,以豌豆凝集素坐标作为起始模型,对小扁豆凝集素正交晶型进行X射线结构测定的结果。该结构在2.3 Å分辨率下通过分子动力学精修和经典约束最小二乘精修相结合的方式进行了优化。在7.0 Å至2.3 Å分辨率之间,所有Fo > 1σ(Fo)数据的最终R值为0.164%,与理想键长的偏差为0.014 Å。结果表明,β链的C末端比先前研究中发现的长23个氨基酸。这与先前确定的氨基酸序列和观察到的电子密度之间的若干不一致之处,促使重新确定该蛋白质的氨基酸序列。其整体结构与豌豆凝集素和山黧豆异凝集素I非常相似,最显著的差异局限于环区和分子间接触区域。豌豆和小扁豆凝集素单体之间最大的差异位于β链73 - 79位氨基酸的环区。不对称单元中两个晶体学独立的小扁豆凝集素单体之间没有显著差异。该模型包含104个定义明确的水分子,其中相当数量在豌豆凝集素结构中有对应物。与其他豆科凝集素一样,每个小扁豆凝集素单体在高度保守的环境中含有一个钙离子。相反,锰结合位点相对于豌豆凝集素和伴刀豆球蛋白A的结构发生了扭曲。Asp β121侧链显然不与Mn2+离子配位。这种差异在两个小扁豆凝集素单体中都是一致的,并且与早期的溶液研究结果相符。文中讨论了其对寡糖结合可能产生的影响。

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