Facile O-atom insertion into C-C and C-H bonds by a trinuclear copper complex designed to harness a singlet oxene

被引:69
作者
Chen, Peter P. -Y. [1 ]
Yang, Richard B. -G. [1 ]
Lee, Jason C. -M. [1 ]
Chan, Sunney I. [1 ]
机构
[1] Acad Sinica, Inst Chem, Taipei 115, Taiwan
关键词
density functional theory; methane monooxygenase; membrane-bound or particulate methane monooxygenase; soluble methane monooxygenase; mass spectroscopy;
D O I
10.1073/pnas.0707119104
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Two trinuclear copper [(CuCuCu1)-Cu-1-Cu-1(L)](1+) complexes have been prepared with the multidentate ligands (L) 3,3'-(1,4-diazepane-1,4-diyl)bis(1-((2-(dimethylamino)ethyl)(methyl)amino)propan-2-ol) (7-Me) and (3,3'-(1,4-diazepane-1,4-diyl)bis(1-((2-(diethylamino) ethyl)(ethyl) amino)propan-2-ol) (7-Et) as models for the active site of the particulate methane monooxygenase (pMMO). The ligands were designed to form the proper spatial and electronic geometry to harness a "singlet oxene," according to the mechanism previously suggested by our laboratory. Consistent with the design strategy, both [(CuCuCu1)-Cu-1-Cu-1(L)](1+) reacted with clioxygen to form a putative bis(mu(3)-oxo)(CuCuCuIII)-Cu-II-Cu-II species, capable of facile O-atom insertion across the central C-C bond of benzil and 2,3-butanedione at ambient temperature and pressure. These complexes also catalyze facile O-atom transfer to the C-H bond of CH3CN to form glycolonitrile. These results, together with our recent biochemical studies on pMMO, provide support for our hypothesis that the hydroxylation site of pMMO contains a trinuclear copper cluster that mediates C-H bond activation by a singlet oxene mechanism.
引用
收藏
页码:14570 / 14575
页数:6
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