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Metal ion coordination in 'R' and 'T' state hybrid hemoglobins as revealed by optical, EPR and sulphhydryl reactivity studies

TLDR
In this paper, the sulphhydryl environment in various mixed-metal hybrid hemoglobins, viz. α2(Cu)-β2(FeCO), α2-FeCO)-β 2(Cu), α 2-Cu-β2-Ni, α 2(Ni)- β2-Cu, β 2-Ni-β 2 (β2)-β 4-PDS, was studied by reacting them with the 4,4′-dithiodipyridine (4PDS) reagent.
Abstract
The sulphhydryl environment in various mixed-metal hybrid hemoglobins, viz. α2(Cu)-β2(FeCO), α2(FeCO)-β2(Cu), α2(Cu)-β2(Ni), α2(Ni)-β2(Cu), was studied by reacting them with the sulphhydryl reagent, 4,4′-dithiodipyridine (4-PDS). The reactivity was compared with that of HbCO, NiHb and CuHb. It is found that there exists a correlation between conformational change and metal ion environment, not only at the extreme R and T states but also the intermediate conformations. EPR examinations of these hybrids show that both in R state-[Cu(II)-Fe(II)] and T state-[Cu(II)-Ni(II)] hybrids at neutral pH and in the absence of IHP, CuPPIX, irrespective of the subunit in which it is present, has a mixed-metal ion environment: Species 1, a five-coordinated Cu2+ complex with strong proximal histidine bond and species 2, a four-coordinated complex without any covalent linkage with Ne F8-histidine.

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Studies on nitrosyl hemes in Ni(II)-Fe(II) hybrid hemoglobins.

TL;DR: The bond between N(epsilon) and Fe is fundamental to the structure-function relation in Hb, as the motion of this nitrogen triggers the vast transformation, which occurs in the whole molecule on attachment of NO.
References
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Journal ArticleDOI

Proton nuclear magnetic resonance and spectrophotometric studies of nickel(II)-iron(II) hybrid hemoglobins.

TL;DR: Electronic absorption spectra and hyperfine-shifted proton resonances indicate that the ligation of CO in the beta(Fe) subunits induced changes in the coordination and spin states of Ni-PP in the alpha subunits.
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Four- and five-coordinate species in nickel-reconstituted hemoglobin and myoglobin: Raman identification of the nickel-histidine stretching mode.

TL;DR: Results suggest that Ni in the second site possesses a single axial ligand, consistent with the UV-visible absorption spectrum of NiHb, which shows two Soret bands at 397 and 420 nm and one Soret at 424 nm for NiMb.
Journal ArticleDOI

Subunit heterogeneity in the structure and dynamics of hemoglobin. A transient Raman study.

TL;DR: In this article, the authors present a list of keywords not received and keywords that were not received.and keywords not needed.and keyword not received, and keywords not required.and
Journal ArticleDOI

The porphyrin-iron hybrid hemoglobins. Absence of the Fe-His bonds in one type of subunits favors a deoxy-like structure with low oxygen affinity.

TL;DR: Property of PP-Fe hybrids with those of Co-Fe and Ni- Fe hybrids are compared and it is concluded that the first oxygen binding to the beta heme may be linked to the metal-proximal His interaction in the alpha subunits.
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