Gatti D L, Palfey B A, Lah M S, Entsch B, Massey V, Ballou D P, Ludwig M L
Department of Biological Chemistry, University of Michigan, Ann Arbor 48109.
Science. 1994 Oct 7;266(5182):110-4. doi: 10.1126/science.7939628.
Para-hydroxybenzoate hydroxylase inserts oxygen into substrates by means of the labile intermediate, flavin C(4a)-hydroperoxide. This reaction requires transient isolation of the flavin and substrate from the bulk solvent. Previous crystal structures have revealed the position of the substrate para-hydroxybenzoate during oxygenation but not how it enters the active site. In this study, enzyme structures with the flavin ring displaced relative to the protein were determined, and it was established that these or similar flavin conformations also occur in solution. Movement of the flavin appears to be essential for the translocation of substrates and products into the solvent-shielded active site during catalysis.
对羟基苯甲酸羟化酶通过不稳定中间体黄素C(4a)-氢过氧化物将氧插入底物中。该反应需要将黄素和底物与大量溶剂短暂隔离。先前的晶体结构揭示了底物对羟基苯甲酸在氧化过程中的位置,但未揭示其如何进入活性位点。在本研究中,确定了黄素环相对于蛋白质发生位移的酶结构,并证实这些或类似的黄素构象在溶液中也会出现。在催化过程中,黄素的移动似乎对于底物和产物转运到溶剂屏蔽的活性位点至关重要。