Literature DB >> 22452706

Interaction of deoxyhemoglobin with the cytoplasmic domain of murine erythrocyte band 3.

Martiana F Sega1, Haiyan Chu, John Christian, Philip S Low.   

Abstract

The partial pressure of oxygen constitutes an important factor in the regulation of human erythrocyte physiology, including control of cell volume, membrane structure, and glucose metabolism. Because band 3 is thought to be involved in all three processes and because binding of hemoglobin (Hb) to the cytoplasmic domain of band 3 (cdb3) is strongly oxygen-dependent, the possibility that the reversible association of deoxyhemoglobin (deoxyHb) with cdb3 might constitute an O(2)-dependent sensor that mediates O(2)-regulated changes in erythrocyte properties arises. While several lines of evidence support this hypothesis, a major opposing argument lies in the fact that the deoxyHb binding sequence on human cdb3 is not conserved. Moreover, no effect of O(2) pressure on Hb-band 3 interactions has ever been demonstrated in another species. To explore whether band 3-Hb interactions might be widely involved in O(2)-dependent regulation of erythrocyte physiology, we undertook characterization of the effect of O(2) on band 3-Hb interactions in the mouse. We report here that murine band 3 binds deoxyHb with significantly greater affinity than oxyHb, despite the lack of significant homology within the deoxyHb binding sequence. We further map the deoxyHb binding site on murine band 3 and show that deletion of the site eliminates deoxyHb binding. Finally, we identify mutations in murine cdb3 that either enhance or eliminate its affinity for murine deoxyHb. These data demonstrate that despite a lack of homology in the sequences of both murine band 3 and murine Hb, a strong oxygen-dependent association of the two proteins has been conserved.

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Year:  2012        PMID: 22452706      PMCID: PMC3332082          DOI: 10.1021/bi201623v

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  59 in total

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2.  Crystallographic structure and functional interpretation of the cytoplasmic domain of erythrocyte membrane band 3.

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Journal:  J Biol Chem       Date:  2002-12-12       Impact factor: 5.157

4.  Effect of oxygen tension on glycolysis in human erythrocytes.

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5.  The erythrocyte effects of haemoglobin O(ARAB).

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Journal:  Br J Haematol       Date:  1999-12       Impact factor: 6.998

6.  Oxidants and regulation of K(+)-Cl(-) cotransport in equine red blood cells.

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7.  Modulation of red cell glycolysis: interactions between vertebrate hemoglobins and cytoplasmic domains of band 3 red cell membrane proteins.

Authors:  Roy E Weber; Wolfgang Voelter; Angela Fago; Hartmut Echner; Estela Campanella; Philip S Low
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9.  Oxygen dependence of K(+)-Cl- cotransport in human red cell ghosts and sickle cells.

Authors:  Asif I Khan; Clare Drew; Sarah E Ball; Vicky Ball; J Clive Ellory; John S Gibson
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Authors:  Clare Drew; Vicky Ball; Hannah Robinson; J Clive Ellory; John S Gibson
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  11 in total

1.  Regulation of erythrocyte Na+/K+/2Cl- cotransport by an oxygen-switched kinase cascade.

Authors:  Suilan Zheng; Nathan A Krump; Mary M McKenna; Yen-Hsing Li; Anke Hannemann; Lisa J Garrett; John S Gibson; David M Bodine; Philip S Low
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2.  Reversible binding of hemoglobin to band 3 constitutes the molecular switch that mediates O2 regulation of erythrocyte properties.

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Review 3.  Effects of Hypoxia on Erythrocyte Membrane Properties-Implications for Intravascular Hemolysis and Purinergic Control of Blood Flow.

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4.  Oxygen tension-mediated erythrocyte membrane interactions regulate cerebral capillary hyperemia.

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5.  Effect of radiographic contrast media on the spectrin/band3-network of the membrane skeleton of erythrocytes.

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Review 6.  Effects of radiographic contrast media on the micromorphology of the junctional complex of erythrocytes visualized by immunocytology.

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7.  Band 3 Erythrocyte Membrane Protein Acts as Redox Stress Sensor Leading to Its Phosphorylation by p (72) Syk.

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8.  Cation Homeostasis in Red Cells From Patients With Sickle Cell Disease Heterologous for HbS and HbC (HbSC Genotype).

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9.  Sepsis impairs microvascular autoregulation and delays capillary response within hypoxic capillaries.

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Review 10.  The Effect of Sepsis on the Erythrocyte.

Authors:  Ryon M Bateman; Michael D Sharpe; Mervyn Singer; Christopher G Ellis
Journal:  Int J Mol Sci       Date:  2017-09-08       Impact factor: 5.923

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