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The interactome of the N-terminus of band 3 regulates red blood cell metabolism and storage quality

Band 3 (anion exchanger 1; AE1) is the most abundant membrane protein in red blood cells, which in turn are the most abundant cells in the human body. A compelling model posits that, at high oxygen saturation, the N-terminal cytosolic domain of AE1 binds to and inhibits glycolytic enzymes, thus dive...

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Autores principales: Issaian, Aaron, Hay, Ariel, Dzieciatkowska, Monika, Roberti, Domenico, Perrotta, Silverio, Darula, Zsuzsanna, Redzic, Jasmina, Busch, Micheal P., Page, Grier P., Rogers, Stephen C., Doctor, Allan, Hansen, Kirk C., Eisenmesser, Elan Z., Zimring, James C., D’Alessandro, Angelo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Fondazione Ferrata Storti 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8561282/
https://www.ncbi.nlm.nih.gov/pubmed/33979990
http://dx.doi.org/10.3324/haematol.2020.278252
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author Issaian, Aaron
Hay, Ariel
Dzieciatkowska, Monika
Roberti, Domenico
Perrotta, Silverio
Darula, Zsuzsanna
Redzic, Jasmina
Busch, Micheal P.
Page, Grier P.
Rogers, Stephen C.
Doctor, Allan
Hansen, Kirk C.
Eisenmesser, Elan Z.
Zimring, James C.
D’Alessandro, Angelo
author_facet Issaian, Aaron
Hay, Ariel
Dzieciatkowska, Monika
Roberti, Domenico
Perrotta, Silverio
Darula, Zsuzsanna
Redzic, Jasmina
Busch, Micheal P.
Page, Grier P.
Rogers, Stephen C.
Doctor, Allan
Hansen, Kirk C.
Eisenmesser, Elan Z.
Zimring, James C.
D’Alessandro, Angelo
author_sort Issaian, Aaron
collection PubMed
description Band 3 (anion exchanger 1; AE1) is the most abundant membrane protein in red blood cells, which in turn are the most abundant cells in the human body. A compelling model posits that, at high oxygen saturation, the N-terminal cytosolic domain of AE1 binds to and inhibits glycolytic enzymes, thus diverting metabolic fluxes to the pentose phosphate pathway to generate reducing equivalents. Dysfunction of this mechanism occurs during red blood cell aging or storage under blood bank conditions, suggesting a role for AE1 in the regulation of the quality of stored blood and efficacy of transfusion, a life-saving intervention for millions of recipients worldwide. Here we leveraged two murine models carrying genetic ablations of AE1 to provide mechanistic evidence of the role of this protein in the regulation of erythrocyte metabolism and storage quality. Metabolic observations in mice recapitulated those in a human subject lacking expression of AE11-11 (band 3 Neapolis), while common polymorphisms in the region coding for AE11-56 correlate with increased susceptibility to osmotic hemolysis in healthy blood donors. Through thermal proteome profiling and crosslinking proteomics, we provide a map of the red blood cell interactome, with a focus on AE11-56 and validate recombinant AE1 interactions with glyceraldehyde 3-phosphate dehydrogenase. As a proof-of-principle and to provide further mechanistic evidence of the role of AE1 in the regulation of redox homeo stasis of stored red blood cells, we show that incubation with a cell-penetrating AE11-56 peptide can rescue the metabolic defect in glutathione recycling and boost post-transfusion recovery of stored red blood cells from healthy human donors and genetically ablated mice.
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spelling pubmed-85612822021-11-10 The interactome of the N-terminus of band 3 regulates red blood cell metabolism and storage quality Issaian, Aaron Hay, Ariel Dzieciatkowska, Monika Roberti, Domenico Perrotta, Silverio Darula, Zsuzsanna Redzic, Jasmina Busch, Micheal P. Page, Grier P. Rogers, Stephen C. Doctor, Allan Hansen, Kirk C. Eisenmesser, Elan Z. Zimring, James C. D’Alessandro, Angelo Haematologica Article Band 3 (anion exchanger 1; AE1) is the most abundant membrane protein in red blood cells, which in turn are the most abundant cells in the human body. A compelling model posits that, at high oxygen saturation, the N-terminal cytosolic domain of AE1 binds to and inhibits glycolytic enzymes, thus diverting metabolic fluxes to the pentose phosphate pathway to generate reducing equivalents. Dysfunction of this mechanism occurs during red blood cell aging or storage under blood bank conditions, suggesting a role for AE1 in the regulation of the quality of stored blood and efficacy of transfusion, a life-saving intervention for millions of recipients worldwide. Here we leveraged two murine models carrying genetic ablations of AE1 to provide mechanistic evidence of the role of this protein in the regulation of erythrocyte metabolism and storage quality. Metabolic observations in mice recapitulated those in a human subject lacking expression of AE11-11 (band 3 Neapolis), while common polymorphisms in the region coding for AE11-56 correlate with increased susceptibility to osmotic hemolysis in healthy blood donors. Through thermal proteome profiling and crosslinking proteomics, we provide a map of the red blood cell interactome, with a focus on AE11-56 and validate recombinant AE1 interactions with glyceraldehyde 3-phosphate dehydrogenase. As a proof-of-principle and to provide further mechanistic evidence of the role of AE1 in the regulation of redox homeo stasis of stored red blood cells, we show that incubation with a cell-penetrating AE11-56 peptide can rescue the metabolic defect in glutathione recycling and boost post-transfusion recovery of stored red blood cells from healthy human donors and genetically ablated mice. Fondazione Ferrata Storti 2021-05-13 /pmc/articles/PMC8561282/ /pubmed/33979990 http://dx.doi.org/10.3324/haematol.2020.278252 Text en Copyright© 2021 Ferrata Storti Foundation https://creativecommons.org/licenses/by-nc/4.0/This article is distributed under the terms of the Creative Commons Attribution Noncommercial License (by-nc 4.0) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Article
Issaian, Aaron
Hay, Ariel
Dzieciatkowska, Monika
Roberti, Domenico
Perrotta, Silverio
Darula, Zsuzsanna
Redzic, Jasmina
Busch, Micheal P.
Page, Grier P.
Rogers, Stephen C.
Doctor, Allan
Hansen, Kirk C.
Eisenmesser, Elan Z.
Zimring, James C.
D’Alessandro, Angelo
The interactome of the N-terminus of band 3 regulates red blood cell metabolism and storage quality
title The interactome of the N-terminus of band 3 regulates red blood cell metabolism and storage quality
title_full The interactome of the N-terminus of band 3 regulates red blood cell metabolism and storage quality
title_fullStr The interactome of the N-terminus of band 3 regulates red blood cell metabolism and storage quality
title_full_unstemmed The interactome of the N-terminus of band 3 regulates red blood cell metabolism and storage quality
title_short The interactome of the N-terminus of band 3 regulates red blood cell metabolism and storage quality
title_sort interactome of the n-terminus of band 3 regulates red blood cell metabolism and storage quality
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8561282/
https://www.ncbi.nlm.nih.gov/pubmed/33979990
http://dx.doi.org/10.3324/haematol.2020.278252
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