Xue Y, Vidgren J, Svensson L A, Liljas A, Jonsson B H, Lindskog S
Department of Biochemistry, University of Umeå, Sweden.
Proteins. 1993 Jan;15(1):80-7. doi: 10.1002/prot.340150110.
A complex of carbonic anhydrase (CA) with one of its substrates, bicarbonate, has been studied crystallographically. Human isoenzyme II was mutated at position 200 from threonine to histidine, which results in higher affinity for bicarbonate. The HCO3- ion binds in the active site to the zinc ion as a pseudo-bidentate ligand which gives the metal a coordination geometry between tetrahedral and trigonal bipyramide. The water/hydroxide normally bound with tetrahedral coordination to the zinc is probably replaced by the OH group of the bicarbonate ion. The importance of residues Thr-199 and Glu-106 in controlling the binding orientation of HCO3- is discussed as well as the catalytic mechanism. Both the complex as well as the uncomplexed mutant were studied at 1.9 A resolution.
已通过晶体学研究了碳酸酐酶(CA)与其一种底物碳酸氢盐的复合物。人同工酶II在第200位的苏氨酸突变为组氨酸,这导致对碳酸氢盐具有更高的亲和力。HCO3-离子在活性位点作为假双齿配体与锌离子结合,使金属具有介于四面体和三角双锥之间的配位几何结构。通常以四面体配位与锌结合的水/氢氧化物可能被碳酸氢根离子的OH基团取代。讨论了残基Thr-199和Glu-106在控制HCO3-结合取向方面的重要性以及催化机制。在1.9埃分辨率下研究了复合物以及未复合的突变体。