Nalazite se na CroRIS probnoj okolini. Ovdje evidentirani podaci neće biti pohranjeni u Informacijskom sustavu znanosti RH. Ako je ovo greška, CroRIS produkcijskoj okolini moguće je pristupi putem poveznice www.croris.hr
izvor podataka: crosbi !

A Computational Study of Substrate Mechanism of Pyruvate-Formate Lyase (CROSBI ID 532172)

Prilog sa skupa u zborniku | sažetak izlaganja sa skupa

Čondić-Jurkić, Karmen ; Zipse, Hendrik ; Smith, David M. A Computational Study of Substrate Mechanism of Pyruvate-Formate Lyase // Density Functional Theory in Physics and Chemistry (DFT 07). Amsterdam: Stichting HRSMC Congresorganisatie, 2007. str. 103-x

Podaci o odgovornosti

Čondić-Jurkić, Karmen ; Zipse, Hendrik ; Smith, David M.

engleski

A Computational Study of Substrate Mechanism of Pyruvate-Formate Lyase

High-level quantum mechanical calculations have been performed on small model systems relevant to the substrate mechanism of Pyruvate Formate-Lyase (PFL), comparing the reactivity of the natural substrate pyruvate with that of the known inhibitor oxamate. For both substrates the presently accepted (consensus) mechanism, involving the addition of a cystine-based thiyl radical to the carbonyl carbon of the substrate, is compared to an alternative mechanism involving hydrogen abstraction as the primary step. This mechanism, relevant because of the known structural homology between PFL and the ribonucleotide reductase family of enzymes, is found to display similar reaction barriers to the consensus mechanism, but is much less favorable with respect to the reaction energetics. The inhibitory effect of oxamate can be traced back to an increase in reaction barrier and reaction energy along the consensus mechanism pathway. The high-level quantum results have been subsequently used as benchmarks to examine the suitability of applying a coupled quantum-mechanical/molecular mechanical (QM/MM) approach to this system. This comparison shows that while the QM/MM technique gives reaction barriers and enthalpies in good agreement with the complete quantum treatment, some caution must be exercised for properties such as complexation energies. DFT also encounters some difficulties in determining these complexation energies, possibly related to difficulties with dispersion forces.

PFL; glycyl radical enzyme; substrate mechanism; DFT; QM/MM

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

Podaci o prilogu

103-x.

2007.

objavljeno

Podaci o matičnoj publikaciji

Density Functional Theory in Physics and Chemistry (DFT 07)

Amsterdam: Stichting HRSMC Congresorganisatie

Podaci o skupu

12th International Conference on the Applications of DFT 07

poster

26.08.2007-30.08.2007

Amsterdam, Nizozemska

Povezanost rada

Kemija