Fraaije M W, Mattevi A
Dept of Genetics and Microbiology, University of Pavia, via Abbiategrasso 207, 27100 Pavia, Italy.
Trends Biochem Sci. 2000 Mar;25(3):126-32. doi: 10.1016/s0968-0004(99)01533-9.
Many biochemical processes exploit the extraordinary versatility of flavoenzymes and their flavin cofactors. Flavoproteins are now known to have a variety of folding topologies but a careful examination of their structures suggests that there are recurrent features in their catalytic apparatus. The flavoenzymes that catalyse dehydrogenation reactions share a few invariant features in the hydrogen-bond interactions between their protein and flavin constituents. Similarly, the positioning of the reactive part of the substrate with respect to the cofactor is generally conserved. Modulation of substrate and cofactor reactivity and exact positioning of the substrate are key elements in the mode of action of these enzymes.
许多生化过程都利用了黄素酶及其黄素辅因子的非凡通用性。现已知道黄素蛋白具有多种折叠拓扑结构,但对其结构的仔细研究表明,它们的催化装置存在一些反复出现的特征。催化脱氢反应的黄素酶在其蛋白质和黄素成分之间的氢键相互作用中具有一些不变的特征。同样,底物反应部分相对于辅因子的定位通常是保守的。底物和辅因子反应性的调节以及底物的精确定位是这些酶作用方式的关键要素。