Title of article :
Solution 1H NMR study of the active site structure for the double mutant H64Q/V68F cyanide complex from mouse neuroglobin Original Research Article
Author/Authors :
Guowei Yin، نويسنده , , Yanjie Li، نويسنده , , Juan Li، نويسنده , , Jing Li، نويسنده , , Weihong Du، نويسنده , , Qun Wei، نويسنده , , Weihai Fang، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
9
From page :
115
To page :
123
Abstract :
Solution 1H NMR spectroscopy has been carried out to investigate the molecular and electronic structures of the active site in H64Q/V68F double mutant mouse neuroglobin in the cyanomet form. Two heme orientations resulting from a 180° rotation about the α–γ-meso axis were observed with a population ratio about 1:1, and the clearly distinguished B isomer was used to perform the study. Based on the analysis of the dipolar shifts and paramagnetic relaxation constants, the distal Gln64(E7) side chain is obtained to adopt an orientation that may produce hydrogen bond between the NεH1 and the Fe-bound cyanide. The side chain of Phe68(E11) is oriented out of the heme pocket just like that in triple mutant of cyanide complex of sperm whale myoglobin. A 15° rotation of the imidazole ring in axial His96 is observed, which is close to the ϕ angle determined from the crystal structure of NgbCO. The quantitative determinations of the orientation and anisotropies of the paramagnetic susceptibility tensor reveal that cyanide is tilted by 8° from the heme normal which allows for contact to the Gln64(E7) NεH1. The E7 and E11 residues appear to control the direction and the extent of tilt of the bound ligand. Furthermore, the tilt of the ligand has no obvious influence on the heme heterogeneity of cyanide ligation for isomer A/B of the wild type and mutant protein, indicating that factors other than steric effects, such as polarity of heme pocket, impacts on ligand binding affinity.
Keywords :
NMR , Cyanide complex , Double mutant , Mouse neuroglobin , solution structure
Journal title :
Biophysical Chemistry
Serial Year :
2008
Journal title :
Biophysical Chemistry
Record number :
1120068
Link To Document :
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