Literature DB >> 8512319

Nitric oxide binding to human ferrihemoglobins cross-linked between either alpha or beta subunits.

A I Alayash1, J C Fratantoni, C Bonaventura, J Bonaventura, R E Cashon.   

Abstract

We have examined the interactions between nitric oxide (NO) and oxidized human hemoglobin, comparing the behavior of unmodified HbA0 with that of two chemically modified hemoglobins. The latter are promising red cell substitute candidates due to their lower oxygen affinity and greater stability as tetramers. The modified forms examined were HbA-DBBF, cross-linked between the alpha chains with bis(3,5-dibromosalicyl) fumarate, and HbA-FMDA, modified between the beta chains with fumaryl monodibromoaspirin. NO binding to the oxidized forms of these hemoglobins is biphasic, due to the differing reactivities of alpha and beta chains. The structural modifications result in altered rate constants for NO binding to both alpha and beta chains. The affinity of the ferric hemes for NO is not correlated with their oxygen affinities in the ferrous state. In a much slower first-order process, the ferric hemes of HbA become reduced. Faster and more heterogeneous kinetics are observed for reduction of the modified hemoglobins. These results may have physiological relevance, since endogenously produced NO is now recognized to play an important role in the relaxation of vascular smooth muscles. If present in vivo, cell-free hemoglobins exposed to NO become rapidly oxidized. Our results show that subsequent interactions of NO with ferrihemoglobin can result in redox cycling. This has the potential of depleting NO and further altering vascular tone with rates dependent on structural parameters of the ferrihemoglobin that are not determined by oxygen affinity.

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Year:  1993        PMID: 8512319     DOI: 10.1006/abbi.1993.1292

Source DB:  PubMed          Journal:  Arch Biochem Biophys        ISSN: 0003-9861            Impact factor:   4.013


  10 in total

1.  The case of the missing NO-hemoglobin: spectral changes suggestive of heme redox reactions reflect changes in NO-heme geometry.

Authors:  Angela Fago; Alvin L Crumbliss; Jim Peterson; Linda L Pearce; Celia Bonaventura
Journal:  Proc Natl Acad Sci U S A       Date:  2003-09-26       Impact factor: 11.205

Review 2.  Blood substitutes: why haven't we been more successful?

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3.  A method for measuring nitric oxide radical scavenging activity. Scavenging properties of sulfur-containing compounds.

Authors:  M F Vriesman; G R Haenen; G J Westerveld; J B Paquay; H P Voss; A Bast
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Review 4.  βCysteine 93 in human hemoglobin: a gateway to oxidative stability in health and disease.

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5.  S-Nitrosylated fetal hemoglobin in neonatal human blood.

Authors:  Daniel A Riccio; Jonathan R Malowitz; C Michael Cotten; Amy P Murtha; Timothy J McMahon
Journal:  Biochem Biophys Res Commun       Date:  2016-04-06       Impact factor: 3.575

6.  Mixed S-nitrosylated polymerized bovine hemoglobin species moderate hemodynamic effects in acutely hypoxic rats.

Authors:  David Irwin; Paul W Buehler; Abdu I Alayash; Yiping Jia; Joe Bonventura; Ben Foreman; Molly White; Robert Jacobs; Brian Piteo; Martha C TissotvanPatot; Karyn L Hamilton; Robert W Gotshall
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7.  Routes to S-nitroso-hemoglobin formation with heme redox and preferential reactivity in the beta subunits.

Authors:  Benjamin P Luchsinger; Eric N Rich; Andrew J Gow; Elizabeth M Williams; Jonathan S Stamler; David J Singel
Journal:  Proc Natl Acad Sci U S A       Date:  2003-01-10       Impact factor: 11.205

Review 8.  Hemoglobin α in the blood vessel wall.

Authors:  Joshua T Butcher; Tyler Johnson; Jody Beers; Linda Columbus; Brant E Isakson
Journal:  Free Radic Biol Med       Date:  2014-05-14       Impact factor: 7.376

9.  Scalable manufacturing platform for the production of methemoglobin as a non-oxygen carrying control material in studies of cell-free hemoglobin solutions.

Authors:  Xiangming Gu; Richard Hickey; Antara Rath; Andre F Palmer
Journal:  PLoS One       Date:  2022-02-16       Impact factor: 3.752

10.  Post-translational modification as a response to cellular stress induced by hemoglobin oxidation in sickle cell disease.

Authors:  Michael Brad Strader; Sirsendu Jana; Fantao Meng; Michael R Heaven; Arun S Shet; Swee Lay Thein; Abdu I Alayash
Journal:  Sci Rep       Date:  2020-08-26       Impact factor: 4.996

  10 in total

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