Bouckaert J, Loris R, Wyns L
Laboratorium voor Ultrastructuur, Vlaams Interuniversitair Instituut voor Biotechnologie, Vrije Universiteit Brussel, Paardenstraat 65, B-1640 Sint-Genesius-Rode, Belgium.
Acta Crystallogr D Biol Crystallogr. 2000 Dec;56(Pt 12):1569-76. doi: 10.1107/s0907444900013342.
The crystal structures of cadmium/cadmium and zinc/calcium concanavalin A (con A) at pH 5.0 and pH 6.15, respectively, were determined. The structure of cadmium/cadmium con A confirms that the secondary Cd(2+)-binding site S3 is empty at pH 5. The metal-binding sites S1 and S2 are only very slightly affected by the substitution with cadmium. On the other hand, S1 and S2 and most of the protein surface of zinc/calcium con A at pH 6.15 differ from other fully metal-bound and carbohydrate-free structures. Most of these structural differences at the protein surface are a result of the interplay between metal binding, protonation and crystal packing. This interplay is expressed by relative rotations and translations of the con A units in alternative crystal packings and participation in space-group conversions inside crystals in situ. The particular crystal packing of zinc/calcium con A creates a novel zinc-binding site S4. The Zn(2+) ion in S4 ligates two aspartates from one tetramer and a histidine from a symmetry-related tetramer.
分别测定了pH 5.0时镉/镉和pH 6.15时锌/钙伴刀豆球蛋白A(伴刀豆凝集素A,Con A)的晶体结构。镉/镉伴刀豆凝集素A的结构证实,在pH 5时,二级镉(2+)结合位点S3是空的。金属结合位点S1和S2仅受到镉取代的非常轻微的影响。另一方面,pH 6.15时锌/钙伴刀豆凝集素A的S1、S2以及大部分蛋白质表面与其他完全金属结合且无碳水化合物的结构不同。蛋白质表面的这些结构差异大多是金属结合、质子化和晶体堆积之间相互作用的结果。这种相互作用表现为伴刀豆凝集素A单元在不同晶体堆积中的相对旋转和平移,以及原位参与晶体内部的空间群转换。锌/钙伴刀豆凝集素A的特殊晶体堆积产生了一个新的锌结合位点S4。S4中的锌(2+)离子与一个四聚体中的两个天冬氨酸以及一个对称相关四聚体中的一个组氨酸配位。