Protoporphyrin IX iron(II) revisited. overview ofthe Mössbauer spectroscopic parameters of low spin porphyrin iron(II) complexes Part II

Abstract Mössbauer parameters of low spin six coordinate [Fe(II)(Por)L 2 ] and [Fe(II)(Por)LX] complexes (where Por is PPIX or a synthetic porphyrin; L is OH − , H 2 O, a nitrogenous base, CCl 2 , CO or CN − and X is a different ligand to L) are discussed. Our point charge calculation approach is extended to investigate how the axial ligands and the four porphyrinato-N atoms generate the observed quadrupole splittings (ΔE Q ). Partial quadrupole splitting (p.q.s.) and partial centre shift (p.c.s.) values are derived and discussed for all the axial ligands studied herein. It is shown that when the D 4h symmetry breaks down due to porphyrin ring ruffling, the point charge calculations no longer apply. This happens for many synthetic porphyrins but not for the uniquely important [Fe(II)(PPIX)] moiety, (which is ubiquitous in nature). Thus, synthetic porphyrins (like TPP) cannot always act as perfect proxies for natural haem proteins. In all the haem proteins containing [Fe(II)(PPIX)] moieties the haem is planar. Calculations indicate that if H 2 O were bound to the [Fe(II)(PPIX))] present in deoxyhaemoglobin or deoxy myoglobin, then these Fe(II) atoms would be low spin. In contrast for synthetic and natural haem proteins containing haem b (where the haem is connected to the protein backbone via two cysteine residues) the haem plane is ruffled (probably because of the methionine linkages transferring force and controlling the stereochemistry of the haem plane, and thereby its chemistry). For the [Fe(II)(TPP)(CN) 2 ] and [Fe(II)(TPP)(1-MeIm)(CN)] the calculated CN − ligand p.q.s values are suspect and probably show that the lattice charge is affecting them.

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Journal
JBIC Journal of Biological Inorganic Chemistry
Published
2026-09-05
DOI
https://doi.org/10.1007/s00775-026-02158-9
Primary Topic
Hemoglobin structure and function
Type
article
Field-Weighted Citation Impact
0.00

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article

Protoporphyrin IX iron(II) revisited. overview ofthe Mössbauer spectroscopic parameters of low spin porphyrin iron(II) complexes Part II

Jehad A. Taies, Jack Silver, George R. Fern, Husam M Abu-Soud
JBIC Journal of Biological Inorganic Chemistry
Hemoglobin structure and function
article

Protoporphyrin IX iron(II) revisited. overview ofthe Mössbauer spectroscopic parameters of low spin porphyrin iron(II) complexes Part II

Jehad A. Taies, Jack Silver, George R. Fern, Husam M Abu-Soud
article en

Abstract

Abstract Mössbauer parameters of low spin six coordinate [Fe(II)(Por)L 2 ] and [Fe(II)(Por)LX] complexes (where Por is PPIX or a synthetic porphyrin; L is OH − , H 2 O, a nitrogenous base, CCl 2 , CO or CN − and X is a different ligand to L) are discussed. Our point charge calculation approach is extended to investigate how the axial ligands and the four porphyrinato-N atoms generate the observed quadrupole splittings (ΔE Q ). Partial quadrupole splitting (p.q.s.) and partial centre shift (p.c.s.) values are derived and discussed for all the axial ligands studied herein. It is shown that when the D 4h symmetry breaks down due to porphyrin ring ruffling, the point charge calculations no longer apply. This happens for many synthetic porphyrins but not for the uniquely important [Fe(II)(PPIX)] moiety, (which is ubiquitous in nature). Thus, synthetic porphyrins (like TPP) cannot always act as perfect proxies for natural haem proteins. In all the haem proteins containing [Fe(II)(PPIX)] moieties the haem is planar. Calculations indicate that if H 2 O were bound to the [Fe(II)(PPIX))] present in deoxyhaemoglobin or deoxy myoglobin, then these Fe(II) atoms would be low spin. In contrast for synthetic and natural haem proteins containing haem b (where the haem is connected to the protein backbone via two cysteine residues) the haem plane is ruffled (probably because of the methionine linkages transferring force and controlling the stereochemistry of the haem plane, and thereby its chemistry). For the [Fe(II)(TPP)(CN) 2 ] and [Fe(II)(TPP)(1-MeIm)(CN)] the calculated CN − ligand p.q.s values are suspect and probably show that the lattice charge is affecting them.

JBIC Journal of Biological Inorganic Chemistry
Wayne State University (US), University of Anbar (IQ), Brunel University of London (GB)
University of Essex, Innovate UK
Openalex Percentile: Top 14%
Hemoglobin structure and function
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