Abriata Luciano Andres
Laboratory of Biomolecular Modeling, Institute of Bioengineering, School of Life Sciences, Swiss Federal Institute of Technology, EPFL, CH-1015 Lausanne, Switzerland.
Acta Crystallogr B Struct Sci Cryst Eng Mater. 2013 Apr;69(Pt 2):176-83. doi: 10.1107/S2052519213002959. Epub 2013 Feb 26.
Protein X-ray structures with non-corrin cobalt(II)-containing sites, either natural or substituting another native ion, were downloaded from the Protein Data Bank and explored to (i) describe which amino acids are involved in their first ligand shells and (ii) analyze cobalt(II)-donor bond lengths in comparison with previously reported target distances, CSD data and EXAFS data. The set of amino acids involved in Co(II) binding is similar to that observed for catalytic Zn(II) sites, i.e. with a large fraction of carboxylate O atoms from aspartate and glutamate and aromatic N atoms from histidine. The computed Co(II)-donor bond lengths were found to depend strongly on structure resolution, an artifact previously detected for other metal-donor distances. Small corrections are suggested for the target bond lengths to the aromatic N atoms of histidines and the O atoms of water and hydroxide. The available target distance for cysteine (Scys) is confirmed; those for backbone O and other donors remain uncertain and should be handled with caution in refinement and modeling protocols. Finally, a relationship between both Co(II)-O bond lengths in bidentate carboxylates is quantified.
从蛋白质数据库下载了含有非咕啉钴(II)位点的蛋白质X射线结构,这些位点可以是天然的,也可以是替代另一种天然离子的,旨在(i)描述其第一配体壳中涉及哪些氨基酸,以及(ii)与先前报道的目标距离、CSD数据和EXAFS数据相比,分析钴(II)-供体键长。参与Co(II)结合的氨基酸集与催化Zn(II)位点观察到的相似,即大部分是来自天冬氨酸和谷氨酸的羧酸盐O原子以及来自组氨酸的芳香族N原子。发现计算出的Co(II)-供体键长强烈依赖于结构分辨率,这是先前在其他金属-供体距离中检测到的一种假象。建议对组氨酸芳香族N原子以及水和氢氧化物O原子的目标键长进行小的校正。半胱氨酸(Scys)的可用目标距离得到确认;主链O和其他供体的目标距离仍不确定,在精修和建模方案中应谨慎处理。最后,定量了双齿羧酸盐中两个Co(II)-O键长之间的关系。