Pierce J, Reddy G S
Arch Biochem Biophys. 1986 Mar;245(2):483-93. doi: 10.1016/0003-9861(86)90241-9.
The complexation of ribulosebiphosphate carboxylase with CO2, Mg2+, and carboxyarabinitol bisphosphate (CABP) to produce the quaternary enzyme-carbamate-Mg2+-CABP complex closely mimics the formation of the catalytically competent enzyme-carbamate-Mg2+-3-keto-CABP form during enzymatic catalysis. Quaternary complexes were prepared with various metals (Mg2+, Cd2+, Mn2+, Co2+, and Ni2+) and with specifically 13C-enriched ligands. 31P and 13C NMR studies of these complexes demonstrate that the activator CO2 site (carbamate site), the metal binding site, and the substrate binding site are contiguous. It follows that both the carboxylase and oxygenase activities of this bifunctional enzyme are influenced by the structures of the catalytic and activation sites.
核酮糖二磷酸羧化酶与二氧化碳、镁离子和羧基阿拉伯糖醇二磷酸(CABP)络合生成四级酶-氨基甲酸盐-镁离子-CABP络合物,这与酶催化过程中具有催化活性的酶-氨基甲酸盐-镁离子-3-酮基-CABP形式的形成非常相似。用各种金属(镁离子、镉离子、锰离子、钴离子和镍离子)以及特定的13C富集配体制备了四级络合物。对这些络合物的31P和13C NMR研究表明,激活剂二氧化碳位点(氨基甲酸盐位点)、金属结合位点和底物结合位点是相邻的。由此可见,这种双功能酶的羧化酶和加氧酶活性均受催化位点和激活位点结构的影响。