Sepulcre Francesc, Cordomí Arnau, Proietti M Grazia, Perez Juan J, García Joaquin, Querol Enric, Padrós Esteve
Departament d'Enginyeria Agroalimentària i Biotecnologia, Escola Superior d'Agricultura de Barcelona, Universitat Politècnica de Catalunya, Barcelona, Spain.
Proteins. 2007 May 1;67(2):360-74. doi: 10.1002/prot.21273.
The present work describes the results of a study aimed at identifying candidate cation binding sites on the extracellular region of bacteriorhodopsin, including a site near the retinal pocket. The approach used is a combined effort involving computational chemistry methods (computation of cation affinity maps and molecular dynamics) together with the Extended X-Ray Absorption Fine Structure (EXAFS) technique to obtain relevant information about the local structure of the protein in the neighborhood of Mn(2+) ions in different affinity binding sites. The results permit the identification of a high-affinity binding site where the ion is coordinated simultaneously to Asp212(-) and Asp85(-). Comparison of EXAFS data of the wild type protein with the quadruple mutant E9Q/E74Q/E194Q/E204Q at pH 7.0 and 10.0 demonstrate that extracellular glutamic acid residues are involved in cation binding.
本研究描述了一项旨在鉴定细菌视紫红质细胞外区域候选阳离子结合位点的研究结果,包括视网膜口袋附近的一个位点。所采用的方法是综合运用计算化学方法(阳离子亲和力图谱计算和分子动力学)以及扩展X射线吸收精细结构(EXAFS)技术,以获取关于不同亲和力结合位点中Mn(2+)离子附近蛋白质局部结构的相关信息。结果确定了一个高亲和力结合位点,其中离子同时与Asp212(-)和Asp85(-)配位。野生型蛋白质与四重突变体E9Q/E74Q/E194Q/E204Q在pH 7.0和10.0时的EXAFS数据比较表明,细胞外谷氨酸残基参与阳离子结合。