RESONANCE RAMAN-STUDY OF CYANIDE-LIGATED HORSERADISH-PEROXIDASE - DETECTION OF 2 BINDING GEOMETRIES AND DIRECT EVIDENCE FOR THE PUSH-PULL EFFECT

Citation
J. Almustafa et Jr. Kincaid, RESONANCE RAMAN-STUDY OF CYANIDE-LIGATED HORSERADISH-PEROXIDASE - DETECTION OF 2 BINDING GEOMETRIES AND DIRECT EVIDENCE FOR THE PUSH-PULL EFFECT, Biochemistry, 33(8), 1994, pp. 2191-2197
Citations number
44
Categorie Soggetti
Biology
Journal title
ISSN journal
00062960
Volume
33
Issue
8
Year of publication
1994
Pages
2191 - 2197
Database
ISI
SICI code
0006-2960(1994)33:8<2191:RROCH->2.0.ZU;2-M
Abstract
Resonance Raman spectroscopy has been employed to investigate the stru cture of cyanide adducts of the basic isoenzymes of horseradish peroxi dase (HRP) in the pH range 5.5-12.5. Evidence for the binding of cyani de in two forms, characterized by the reversal of ordering of the Fe-C N stretching and Fe-C-N bending vibrations, is observed. Moreover, it is shown that both conformers exhibit an acid-alkaline transition in t he pH range employed. In the first conformer, the Fe-C-N linkage is es sentially linear, exhibiting axial Fe-CN stretching and Fe-C-N bending frequencies at 453 and 405 cm(-1), respectively (at pH 5.5) (Lopez-Ga rriga et al., 1990). In the second conformer, the Fe-C-N fragment is b ent, and the axial stretching and bending modes have been identified a t 360 and 422 cm(-1) at pH 5.5. At pH 12.5, the nu[Fe-CN] stretching m ode of the linear conformer shifts down by 9 cm(-1) to 444 cm(-1) whil e the bending frequency remains unchanged. For the bent conformer at t his pH, the stretching mode shifts to 355 cm (-5 cm(-1)), and the bend ing vibration shifts slightly to lower frequency by 2 cm(-1) to 420 cm (-1) The observed pH-dependent shift of the nu[Fe-CN] stretching mode of the linear conformer is attributed to the direct effect of deproton ation of a distal-side amino acid residue while the shift of nu[Fe-CN] of the bent conformer is most reasonably ascribable to indirect alter ation of the iron-proximal histidine linkage induced by the distal-sid e deprotonation, a spectral response which reflects a protein-coupled ''push-pull'' mechanism for heterolytic O-O bond cleavage.