Yang D, el-Sayed M A
School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta 30332-0400, USA.
Biophys J. 1995 Nov;69(5):2056-9. doi: 10.1016/S0006-3495(95)80075-5.
In our continuing effort to characterize the metal cation binding in bacteriorhodopsin (bR) using Ca(2+)-specific electrodes, potentiometric titration was carried out on deionized solubilized bR (containing monomeric units) and deionized bacterioopsin (bR with its retinal removed). Scatchard plots were analyzed. The monomer was found to have plots similar to those of the trimer, suggesting that the binding sites in bR are localized within the protein monomer unit and not between the molecules within the trimer structure. This also supports the previous assumption that the curvature in the Scatchard plot of regenerated bR is not due to cooperativity of metal cation within the trimer, but rather due to multiple sites. Recent studies further support the finding that the curved Scatchard plot is not due to the cooperativity between the metal ions in the two high affinity sites, wherever they are. The results of the analysis of the Scatchard plot for deionized bacterioopsin have shown a change in the binding characteristics of the high affinity but not the low affinity sites from that observed in bR. This result supports previous conclusions that metal cations in the high affinity sites are not far from the retinal cavity.
为了继续利用钙离子特异性电极表征细菌视紫红质(bR)中的金属阳离子结合情况,我们对去离子化的可溶bR(包含单体单元)和去离子化的细菌视蛋白(去除视黄醛的bR)进行了电位滴定,并分析了斯卡查德图。结果发现单体的图与三聚体的图相似,这表明bR中的结合位点位于蛋白质单体单元内,而非三聚体结构内的分子之间。这也支持了先前的假设,即再生bR的斯卡查德图中的曲率并非由于三聚体内金属阳离子的协同作用,而是由于多个位点。最近的研究进一步支持了以下发现:无论高亲和力位点位于何处,弯曲的斯卡查德图都不是由于两个高亲和力位点中的金属离子之间的协同作用。对去离子化细菌视蛋白的斯卡查德图的分析结果表明,高亲和力位点的结合特性发生了变化,而低亲和力位点的结合特性与bR中观察到的情况没有变化。这一结果支持了先前的结论,即高亲和力位点中的金属阳离子离视黄醛腔不远。