Dft protocol for epr prediction of paramagnetic cu(Ii) complexes and application to protein binding sites

Giuseppe Sciortino, Giuseppe Lubinu, Jean Didier Maréchal, Eugenio Garribba*

*Autor corresponent d’aquest treball

Producció científica: Contribució a revistaArticleRecercaAvaluat per experts

40 Cites (Scopus)
1 Descàrregues (Pure)

Resum

With the aim to provide a general protocol to interpret electron paramagnetic resonance (EPR) spectra of paramagnetic copper(II) coordination compounds, density functional theory (DFT) calculations of spin Hamiltonian parameters g and A for fourteen Cu(II) complexes with different charges, donor sets, and geometry were carried out using ORCA software. The performance of eleven functionals was tested, and on the basis of the mean absolute percent deviation (MAPD) and standard deviation (SD), the ranking of the functionals for Az is: B3LYP > B3PW91 ~ B3P86 > PBE0 > CAM-B3LYP > TPSSh > BH and HLYP > B2PLYP > MPW1PW91 > ω-B97x-D >> M06; and for gz is: PBE0 > BH and HLYP > B2PLYP > ω-B97x-D > B3PW91~B3LYP~B3P86 > CAM-B3LYP > TPSSh~MPW1PW91 >> M06. With B3LYP the MAPD with respect to A exp tl z is 8.6% with a SD of 4.2%, while with PBE0 the MAPD with respect to gz is 2.9% with a SD of 1.1%. The results of the validation confirm the fundamental role of the second order spin-orbit contribution to Az . The computational procedure was applied to predict the values of gz and Az of the adducts formed by Cu(II) with albumin and two fragments of prion protein, 106–126 and 180–193. exp tl.

Idioma originalAnglès
Número d’article55
Nombre de pàgines19
RevistaMagnetochemistry
Volum4
Número4
DOIs
Estat de la publicacióPublicada - de des. 2018

Fingerprint

Navegar pels temes de recerca de 'Dft protocol for epr prediction of paramagnetic cu(Ii) complexes and application to protein binding sites'. Junts formen un fingerprint únic.

Com citar-ho