Siegbahn Per E. M.
Department of Physics, Stockholm University, Box 6730, S-113 85 Stockholm, Sweden.
Inorg Chem. 1999 Jun 14;38(12):2880-2889. doi: 10.1021/ic981332w.
Hybrid DFT calculations are used to study the structures and chemistry of the diiron complex of MMO and RNR. The chemical model used is larger than the ones used previously and contains the full first ligand sphere. New types of structures are suggested for the intermediates observed in the reactions of these enzymes. To obtain the very short Fe-Fe distances recently measured by EXAFS, it is suggested that both compound Q of MMO and compound X of RNR have two bridging carboxylates like the reduced diferrous complex but unlike the diferric complex. Antiferromagnetic coupling is shown to have significant effects on the electronic structure of the complexes and is also important for achieving the short Fe-Fe distance. The new model is also used to study the activation of methane, and a pure hydrogen abstraction transition state is located where a hydrogen of methane is abstracted by a bridging &mgr;-oxo ligand. The combination of the methyl radical with the bridging &mgr;-OH ligand formed occurs without a barrier and is extremely exothermic. This reaction should therefore be very fast. A symmetric transition state for the activation of O(2) is also proposed leading from a suggested compound P to compound Q. In this process, one of the carboxylate bridges of the reduced complex has to move away from O(2) toward one of the irons. These results are discussed in relation to recent experiments.
采用杂化密度泛函理论(Hybrid DFT)计算来研究甲烷单加氧酶(MMO)和核糖核苷酸还原酶(RNR)的双核铁配合物的结构和化学性质。所用的化学模型比之前的更大,且包含完整的第一配位层。针对这些酶反应中观察到的中间体,提出了新型结构。为了得到最近通过扩展X射线吸收精细结构(EXAFS)测量的极短铁 - 铁距离,研究表明MMO的化合物Q和RNR的化合物X都具有两个桥连羧酸盐,类似于还原态的二价铁配合物,而不同于三价铁配合物。反铁磁耦合对配合物的电子结构有显著影响,并且对于实现短的铁 - 铁距离也很重要。新模型还用于研究甲烷的活化,找到了一个纯氢提取过渡态,即甲烷中的一个氢被桥连的μ-氧配体提取。甲基自由基与形成的桥连μ-羟基配体的结合无势垒且极其放热。因此,该反应应该非常快。还提出了一个从假定的化合物P到化合物Q的O(2)活化的对称过渡态。在此过程中,还原态配合物的一个羧酸盐桥必须从O(2)移向其中一个铁原子。结合最近的实验对这些结果进行了讨论。