Kantardjieff Katherine A, Höchtl Peter, Segelke Brent W, Tao Fu Ming, Rupp Bernhard
Department of Chemistry and Biochemistry, W. M. Keck Foundation Center for Molecular Structure, California State University-Fullerton, Fullerton, CA 92834, USA.
Acta Crystallogr D Biol Crystallogr. 2002 May;58(Pt 5):735-43. doi: 10.1107/s0907444901019588. Epub 2002 Apr 26.
A structure of native concanavalin A (ConA), a hardy perennial of structural biology, has been determined in a dimeric crystal form at a resolution of 1.56 A (space group C222(1); unit-cell parameters a = 118.70, b = 101.38, c = 111.97 A; two molecules in the asymmetric unit). The structure has been refined to an R(free) of 0.206 (R = 0.178) after iterative model building and phase-bias removal using Shake&wARP. Correspondence between calculated water-tyrosine interactions and experimentally observed structures near the saccharide-binding site suggests that the observed interactions between Tyr12 and water in various crystal forms are to be expected and are not unique to the presence of an active site. The present structure differs from previously reported atomic resolution structures of ConA in several regions and extends insight into the conformational flexibility of this molecule. Furthermore, this third, low-temperature, structure of ConA in a different crystal form, independently refined using powerful model-bias removal techniques, affords the opportunity to revisit assessment of accuracy and precision in high- or atomic resolution protein structures. It is illustrated that several precise structures of the same molecule can differ substantially in local detail and users of crystallographic models are reminded to consider the potential impact when interpreting structures. Suggestions on how to effectively represent ensembles of crystallographic models of a given molecule are provided.
刀豆球蛋白A(ConA)是结构生物学中的一个经典研究对象,其天然结构已通过二聚体晶体形式确定,分辨率为1.56 Å(空间群C222(1);晶胞参数a = 118.70,b = 101.38,c = 111.97 Å;不对称单元中有两个分子)。在使用Shake&wARP进行迭代模型构建和相位偏差消除后,该结构已精修至R(free)为0.206(R = 0.178)。糖结合位点附近计算得到的水 - 酪氨酸相互作用与实验观察到的结构之间的对应关系表明,在各种晶体形式中观察到的Tyr12与水之间的相互作用是可以预期的,并非活性位点存在所特有的。目前的结构在几个区域与先前报道的ConA原子分辨率结构不同,并扩展了对该分子构象灵活性的认识。此外,这是ConA的第三种低温结构,以不同的晶体形式独立精修,使用了强大的模型偏差消除技术,为重新评估高分辨率或原子分辨率蛋白质结构的准确性和精度提供了机会。结果表明,同一分子的几个精确结构在局部细节上可能有很大差异,并提醒晶体学模型的使用者在解释结构时考虑潜在影响。本文还提供了关于如何有效表示给定分子晶体学模型集合的建议。