| Literature DB >> 16813422 |
Pawel M Kozlowski1, Tadeusz Andruniow, Andrzej A Jarzecki, Marek Z Zgierski, Thomas G Spiro.
Abstract
Density functional theory (DFT)-based normal mode calculations have been carried out on models for B12-cofactors to assign reported isotope-edited resonance Raman spectra, which isolate vibrations of the organo-Co group. Interpretation is straightforward for alkyl-Co derivatives, which display prominent Co-C stretching vibrational bands. DFT correctly reproduces Co-C distances and frequencies for the methyl and ethyl derivatives. However, spectra are complex for adenosyl derivatives, due to mixing of Co-C stretching with a ribose deformation coordinate and to activation of modes involving Co-C-C bending and Co-adenosyl torsion. Despite this complexity, the computed spectra provide a satisfactory re-assignment of the experimental data. Reported trends in adenosyl-cobalamin spectra upon binding to the methylmalonyl CoA mutase enzyme, as well as on subsequent binding of substrates and inhibitors, provide support for an activation mechanism involving substrate-induced deformation of the adenosyl ligand.Entities:
Mesh:
Substances:
Year: 2006 PMID: 16813422 PMCID: PMC2773831 DOI: 10.1021/ic052069j
Source DB: PubMed Journal: Inorg Chem ISSN: 0020-1669 Impact factor: 5.165