Literature DB >> 14677991

Low-spin ferriheme models of the cytochromes: correlation of molecular structure with EPR spectral type.

Liliya A Yatsunyk1, Michael D Carducci, F Ann Walker.   

Abstract

The preparation and characterization of the following bis-imidazole and bis-pyridine complexes of octamethyltetraphenylporphyrinatoiron(III), Fe(III)OMTPP, octaethyltetraphenylporphyrinatoiron(III), Fe(III)OETPP, and tetra-beta,beta'-tetramethylenetetraphenylporphyrinatoiron(III), Fe(III)TC(6)TPP, are reported: paral-[FeOMTPP(1-MeIm)(2)]Cl, perp-[FeOMTPP(1-MeIm)(2)]Cl, [FeOETPP(1-MeIm)(2)]Cl, [FeTC(6)TPP(1-MeIm)(2)]Cl, [FeOMTPP(4-Me(2)NPy)(2)]Cl, and [FeOMTPP(2-MeHIm)(2)]Cl. Crystal structure analysis shows that paral-[FeOMTPP(1-MeIm)(2)]Cl has its axial ligands in close to parallel orientation (the actual dihedral angle between the planes of the imidazole ligands is 19.5 degrees ), while perp-[FeOMTPP(1-MeIm)(2)]Cl has the axial imidazole ligand planes oriented at 90 degrees to each other and 29 degrees away from the closest N(P)-Fe-N(P) axis. [FeOETPP(1-MeIm)(2)]Cl has its axial ligands close to perpendicular orientation (the actual dihedral angle between the planes of the imidazole ligands is 73.1 degrees ). In all three cases the porphyrin core adopts relatively purely saddled geometry. The [FeTC(6)TPP(1-MeIm)(2)]Cl complex is the most planar and has the highest contribution of a ruffled component in the overall saddled structure compared to all other complexes in this study. The estimated numerical contribution of saddled and ruffled components is 0.68:0.32, respectively. Axial ligand planes are perpendicular to each other and 15.3 degrees away from the closest N(P)-Fe-N(P) axis. The Fe-N(P) bond is the longest in the series of octaalkyltetraphenylporphyrinatoiron(III) complexes due to [FeTC(6)TPP(1-MeIm)(2)]Cl having the least distorted porphyrin core. In addition to these three complexes, two crystalline forms each of [FeOMTPP(4-Me(2)NPy)(2)]Cl and [FeOMTPP(2-MeHIm)(2)]Cl were obtained. In all four of these cases the axial planes are in nearly perpendicular planes in spite of quite different geometries of the porphyrin cores (from purely saddled to saddled with 30% ruffling). The EPR spectral type correlates with the geometry of the OMTPP, OETPP and TC(6)TPP complexes. For the paral-[FeOMTPP(1-MeIm)(2)]Cl, a rhombic signal with g(1) = 1.54, g(2) = 2.51, and g(3) = 2.71 is consistent with nearly parallel axial ligand orientation. For all other complexes of this study, "large g(max)" signals are observed (g(max) = 3.61 - 3.27), as are observed for nearly perpendicular ligand plane arrangement. On the basis of this and previous work, the change from "large g(max)" to normal rhombic EPR signal occurs between axial ligand plane dihedral angles of 70 degrees and 30 degrees.

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Year:  2003        PMID: 14677991     DOI: 10.1021/ja036398r

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  14 in total

1.  NMR and EPR studies of chloroiron(III) tetraphenyl-chlorin and its complexes with imidazoles and pyridines of widely differing basicities.

Authors:  Sheng Cai; Tatjana Kh Shokhireva; Dennis L Lichtenberger; F Ann Walker
Journal:  Inorg Chem       Date:  2006-05-01       Impact factor: 5.165

2.  Probing heme vibrational anisotropy: an imidazole orientation effect?

Authors:  Qian Peng; Ming Li; Chuanjiang Hu; Jeffrey W Pavlik; Allen G Oliver; E Ercan Alp; Michael Y Hu; Jiyong Zhao; J Timothy Sage; W Robert Scheidt
Journal:  Inorg Chem       Date:  2013-09-10       Impact factor: 5.165

3.  Low-spin bis(2-methylimidazole)(octaethylporphyrinato)iron(III) chloride (perp-[Fe(OEP)(2-MeHIm)(2)]Cl): a consequence of hydrogen bonding?

Authors:  Chuanjiang Hu; Bruce C Noll; Charles E Schulz; W Robert Scheidt
Journal:  Inorg Chem       Date:  2006-11-27       Impact factor: 5.165

4.  Models of the membrane-bound cytochromes: mössbauer spectra of crystalline low-spin ferriheme complexes having axial ligand plane dihedral angles ranging from 0 degree to 90 degrees.

Authors:  Thomas Teschner; Liliya Yatsunyk; Volker Schünemann; Hauke Paulsen; Heiner Winkler; Chuanjiang Hu; W Robert Scheidt; F Ann Walker; Alfred X Trautwein
Journal:  J Am Chem Soc       Date:  2006-02-01       Impact factor: 15.419

5.  Ligand orientation control in low-spin six-coordinate (porphinato)iron(II) species.

Authors:  Chuanjiang Hu; Bruce C Noll; Charles E Schulz; W Robert Scheidt
Journal:  Inorg Chem       Date:  2005-06-13       Impact factor: 5.165

Review 6.  The heme environment of mouse neuroglobin: histidine imidazole plane orientations obtained from solution NMR and EPR spectroscopy as compared with X-ray crystallography.

Authors:  F Ann Walker
Journal:  J Biol Inorg Chem       Date:  2006-04-04       Impact factor: 3.358

7.  Characterization of the mixed axial ligand complex (4-cyanopyridine)(imidazole)(tetramesitylporphinato)iron(iii) perchlorate. Stabilization by synergic bonding.

Authors:  Judith A Serth-Guzzo; Ilona Turowska-Tyrk; Martin K Safo; F Ann Walker; Peter G Debrunner; W Robert Scheidt
Journal:  J Porphyr Phthalocyanines       Date:  2016 Jan-Apr       Impact factor: 1.811

8.  Spectroscopic and functional characterization of nitrophorin 7 from the blood-feeding insect Rhodnius prolixus reveals an important role of its isoform-specific N-terminus for proper protein function.

Authors:  Markus Knipp; Fei Yang; Robert E Berry; Hongjun Zhang; Maxim N Shokhirev; F Ann Walker
Journal:  Biochemistry       Date:  2007-10-24       Impact factor: 3.162

9.  Assignment of Ferriheme Resonances for High- and Low-Spin Forms of Nitrophorin 3 by H and C NMR Spectroscopy and Comparison to Nitrophorin 2: Heme Pocket Structural Similarities and Differences.

Authors:  Tatiana Kh Shokhireva; Robert E Berry; Hongjun Zhang; Nikolai V Shokhirev; F Ann Walker
Journal:  Inorganica Chim Acta       Date:  2008-03-03       Impact factor: 2.545

Review 10.  Bis-histidine-coordinated hemes in four-helix bundles: how the geometry of the bundle controls the axial imidazole plane orientations in transmembrane cytochromes of mitochondrial complexes II and III and related proteins.

Authors:  Edward A Berry; F Ann Walker
Journal:  J Biol Inorg Chem       Date:  2008-05       Impact factor: 3.358

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