Article ID Journal Published Year Pages File Type
442960 Journal of Molecular Graphics and Modelling 2009 8 Pages PDF
Abstract

A computational investigation was carried out to characterize the 14N and 2H electric field gradient, EFG, in four protonated forms of 4-methyl imidazole (4-MeIm) and Histidine. In an attempt to establish metal binding effect in biological systems, we have considered the various forms of zinc (II) complexes of 4-MeIm. The computations were performed at the B3LYP and PW91P86 levels with 6-311++G(d,P) standard basis set. Calculated EFG tensors were used to determine 14N and 2H nuclear quadrupole coupling constant, χ and asymmetry parameter, η. The results show that Zn2+ has a strong effect on the NQR parameters (χ, η) of proximal nitrogen in contrast with the remote nitrogen. In addition, EFG tensors at the Zn nuclear site were calculated for Zn–4-MeIm complexes and estimated the χ and η values of 67Zn. The influence of the bulk solvent was investigated at the B3LYP/6-311++G(d,p) level using the polarizable continuum model. Finally, we predicted (χ = 1.95 MHz, η = 0.84) for proximal nitrogen, (χ = 2.38 MHz, η = 0.07) for remote nitrogen and (χ = 1.28 MHz, η = 0.22) for Zn in superoxide dismutase.

Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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