Title of article
Pentacoordinate and hexacoordinate ferric hemes in acid medium: EPR, UV–Vis and CD studies of the giant extracellular hemoglobin of Glossoscolex paulistus Original Research Article
Author/Authors
Leonardo Marmo Moreira، نويسنده , , Alessandra Lima Poli، نويسنده , , Antonio José Costa-Filho، نويسنده , , Hidetake Imasato، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
11
From page
62
To page
72
Abstract
The equilibrium complexity involving different axially coordinated hemes is peculiar to hemoglobins. The pH dependence of the spontaneous exchange of ligands in the extracellular hemoglobin from Glossoscolex paulistus was studied using UV–Vis, EPR, and CD spectroscopies. This protein has a complex oligomeric assembly with molecular weight of 3.1 MDa that presents an important cooperative effect. A complex coexistence of different species was observed in almost all pH values, except pH 7.0, where just aquomet species is present. Four new species were formed and coexist with the aquomethemoglobin upon acidification: (i) a “pure” low-spin hemichrome (Type II), also called hemichrome B, with an usual spin state (dxy)2(dxz,dyz)3; (ii) a strong gmax hemichrome (Type I), also showing an usual spin state (dxy)2(dxz,dyz)3; (iii) a hemichrome with unusual spin state (dxz,dyz)4(dxy)1 (Type III); (iv) and a high-spin pentacoordinate species. CD measurements suggest that the mechanism of species formation could be related with an initial process of acid denaturation. However, it is worth mentioning that based on EPR the aquomet species remains even at acidic pH, indicating that the transitions are not complete. The “pure” low-spin hemichrome presents a parallel orientation of the imidazole ring planes but the strong gmax hemichrome is a HALS (highly anisotropic low-spin) species indicating a reciprocally perpendicular orientation of the imidazole ring planes. The hemichromes and pentacoordinate formation mechanisms are discussed in detail.
Keywords
Hexacoordinate , Hemoglobin , Hemichrome , pH , Pentacoordinate
Journal title
Biophysical Chemistry
Serial Year
2006
Journal title
Biophysical Chemistry
Record number
1119731
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