Coordination sphere flexibility of active-site models for Fe-only hydrogenase: Studies in intra- and intermolecular diatomic ligand exchange

Citation
Ej. Lyon et al., Coordination sphere flexibility of active-site models for Fe-only hydrogenase: Studies in intra- and intermolecular diatomic ligand exchange, J AM CHEM S, 123(14), 2001, pp. 3268-3278
Citations number
54
Categorie Soggetti
Chemistry & Analysis",Chemistry
Journal title
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
ISSN journal
00027863 → ACNP
Volume
123
Issue
14
Year of publication
2001
Pages
3268 - 3278
Database
ISI
SICI code
0002-7863(20010411)123:14<3268:CSFOAM>2.0.ZU;2-G
Abstract
A series of dinuclear complexes, (mu -SRS)Fe-2(Co)(6) (R = -CH2CH2-, -CH2CH 2CH2-, -CH2- C6H4-CH2-; edt, pdt, and o-xyldt, respectively) has been exami ned for specific characteristics that might relate to structural similarity with the active site of Fe-only hydrogenases. Variable temperature proton NMR studies display the fluxionality of the iron-dithiocyclohexane unit in (mu -pdt)Fe-2(CO)(6) while in the (mu -oxyldt)Fe-2(CO)(6) compound, the bri dge is fixed. Temperature-dependent C-13 NMR spectral studies establish int ramolecular CO site exchange localized on discrete Fe(CO)(3) units in all c omplexes, which is influenced by steric effects of the mu -SRS unit. Kineti c studies of intermolecular CO/CN- ligand-exchange reactions establish asso ciative or I-a mechanisms in sequential steps to form the dicyano dianion, (mu -SRS)[Fe(CO)(2)(CN)](2)(=) with 100% selectivity. Theoretical calculati ons (DFT) of transition states in the intramolecular site-exchange processe s lead to a rationale for the interesting cooperativity in the CN-/CO inter molecular ligand-exchange process. The hinge motion of the three light atom S-to-S bridge is related to a possible heterolytic H-2 activation/producti on process in the enzyme.