Cargando…

Fyn specifically Regulates the activity of red cell glucose-6-phosphate-dehydrogenase

Fyn is a tyrosine kinase belonging to the Src family (Src-Family-Kinase, SFK), ubiquitously expressed. Previously, we report that Fyn is important in stress erythropoiesis. Here, we show that in red cells Fyn specifically stimulates G6PD activity, resulting in a 3-fold increase enzyme catalytic acti...

Descripción completa

Detalles Bibliográficos
Autores principales: Alessandro, Matte’, Francesca, Lupo, Elena, Tibaldi, Maria Luisa, Di Paolo, Enrica, Federti, Carpentieri, Andrea, Pucci, Piero, Maria, Brunati Anna, Luca, Cesaro, Francesco, Turrini, Saul, Gomez Manzo, Choi, Soo Young, Jaime, Marcial Quino, Won, Kim Dae, Pantaleo, Antonella, An, Xiuli, Iatcenko, Iana, Domenica, Cappellini Maria, Luca, Forni Gian, Lucia, De Franceschi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7387845/
https://www.ncbi.nlm.nih.gov/pubmed/32863204
http://dx.doi.org/10.1016/j.redox.2020.101639
_version_ 1783564207045738496
author Alessandro, Matte’
Francesca, Lupo
Elena, Tibaldi
Maria Luisa, Di Paolo
Enrica, Federti
Carpentieri, Andrea
Pucci, Piero
Maria, Brunati Anna
Luca, Cesaro
Francesco, Turrini
Saul, Gomez Manzo
Choi, Soo Young
Jaime, Marcial Quino
Won, Kim Dae
Pantaleo, Antonella
An, Xiuli
Iatcenko, Iana
Domenica, Cappellini Maria
Luca, Forni Gian
Lucia, De Franceschi
author_facet Alessandro, Matte’
Francesca, Lupo
Elena, Tibaldi
Maria Luisa, Di Paolo
Enrica, Federti
Carpentieri, Andrea
Pucci, Piero
Maria, Brunati Anna
Luca, Cesaro
Francesco, Turrini
Saul, Gomez Manzo
Choi, Soo Young
Jaime, Marcial Quino
Won, Kim Dae
Pantaleo, Antonella
An, Xiuli
Iatcenko, Iana
Domenica, Cappellini Maria
Luca, Forni Gian
Lucia, De Franceschi
author_sort Alessandro, Matte’
collection PubMed
description Fyn is a tyrosine kinase belonging to the Src family (Src-Family-Kinase, SFK), ubiquitously expressed. Previously, we report that Fyn is important in stress erythropoiesis. Here, we show that in red cells Fyn specifically stimulates G6PD activity, resulting in a 3-fold increase enzyme catalytic activity (k(cat)) by phosphorylating tyrosine (Tyr)-401. We found Tyr-401 on G6PD as functional target of Fyn in normal human red blood cells (RBC), being undetectable in G6PD deficient RBCs (G6PD-Mediterranean and G6PD-Genova). Indeed, Tyr-401 is located to a region of the G6PD molecule critical for the formation of the enzymatically active dimer. Amino acid replacements in this region are mostly associated with a chronic hemolysis phenotype. Using mutagenesis approach, we demonstrated that the phosphorylation status of Tyr401 modulates the interaction of G6PD with G6P and stabilizes G6PD in a catalytically more efficient conformation. RBCs from Fyn(-/−)mice are defective in G6PD activity, resulting in increased susceptibility to primaquine-induced intravascular hemolysis. This negatively affected the recycling of reduced Prx2 in response to oxidative stress, indicating that defective G6PD phosphorylation impairs defense against oxidation. In human RBCs, we confirm the involvement of the thioredoxin/Prx2 system in the increase vulnerability of G6PD deficient RBCs to oxidation. In conclusion, our data suggest that Fyn is an oxidative radical sensor, and that Fyn-mediated Tyr-401 phosphorylation, by increasing G6PD activity, plays an important role in the physiology of RBCs. Failure of G6PD activation by this mechanism may be a major limiting factor in the ability of G6PD deficient RBCs to withstand oxidative stress.
format Online
Article
Text
id pubmed-7387845
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-73878452020-07-31 Fyn specifically Regulates the activity of red cell glucose-6-phosphate-dehydrogenase Alessandro, Matte’ Francesca, Lupo Elena, Tibaldi Maria Luisa, Di Paolo Enrica, Federti Carpentieri, Andrea Pucci, Piero Maria, Brunati Anna Luca, Cesaro Francesco, Turrini Saul, Gomez Manzo Choi, Soo Young Jaime, Marcial Quino Won, Kim Dae Pantaleo, Antonella An, Xiuli Iatcenko, Iana Domenica, Cappellini Maria Luca, Forni Gian Lucia, De Franceschi Redox Biol Research Paper Fyn is a tyrosine kinase belonging to the Src family (Src-Family-Kinase, SFK), ubiquitously expressed. Previously, we report that Fyn is important in stress erythropoiesis. Here, we show that in red cells Fyn specifically stimulates G6PD activity, resulting in a 3-fold increase enzyme catalytic activity (k(cat)) by phosphorylating tyrosine (Tyr)-401. We found Tyr-401 on G6PD as functional target of Fyn in normal human red blood cells (RBC), being undetectable in G6PD deficient RBCs (G6PD-Mediterranean and G6PD-Genova). Indeed, Tyr-401 is located to a region of the G6PD molecule critical for the formation of the enzymatically active dimer. Amino acid replacements in this region are mostly associated with a chronic hemolysis phenotype. Using mutagenesis approach, we demonstrated that the phosphorylation status of Tyr401 modulates the interaction of G6PD with G6P and stabilizes G6PD in a catalytically more efficient conformation. RBCs from Fyn(-/−)mice are defective in G6PD activity, resulting in increased susceptibility to primaquine-induced intravascular hemolysis. This negatively affected the recycling of reduced Prx2 in response to oxidative stress, indicating that defective G6PD phosphorylation impairs defense against oxidation. In human RBCs, we confirm the involvement of the thioredoxin/Prx2 system in the increase vulnerability of G6PD deficient RBCs to oxidation. In conclusion, our data suggest that Fyn is an oxidative radical sensor, and that Fyn-mediated Tyr-401 phosphorylation, by increasing G6PD activity, plays an important role in the physiology of RBCs. Failure of G6PD activation by this mechanism may be a major limiting factor in the ability of G6PD deficient RBCs to withstand oxidative stress. Elsevier 2020-07-11 /pmc/articles/PMC7387845/ /pubmed/32863204 http://dx.doi.org/10.1016/j.redox.2020.101639 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Alessandro, Matte’
Francesca, Lupo
Elena, Tibaldi
Maria Luisa, Di Paolo
Enrica, Federti
Carpentieri, Andrea
Pucci, Piero
Maria, Brunati Anna
Luca, Cesaro
Francesco, Turrini
Saul, Gomez Manzo
Choi, Soo Young
Jaime, Marcial Quino
Won, Kim Dae
Pantaleo, Antonella
An, Xiuli
Iatcenko, Iana
Domenica, Cappellini Maria
Luca, Forni Gian
Lucia, De Franceschi
Fyn specifically Regulates the activity of red cell glucose-6-phosphate-dehydrogenase
title Fyn specifically Regulates the activity of red cell glucose-6-phosphate-dehydrogenase
title_full Fyn specifically Regulates the activity of red cell glucose-6-phosphate-dehydrogenase
title_fullStr Fyn specifically Regulates the activity of red cell glucose-6-phosphate-dehydrogenase
title_full_unstemmed Fyn specifically Regulates the activity of red cell glucose-6-phosphate-dehydrogenase
title_short Fyn specifically Regulates the activity of red cell glucose-6-phosphate-dehydrogenase
title_sort fyn specifically regulates the activity of red cell glucose-6-phosphate-dehydrogenase
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7387845/
https://www.ncbi.nlm.nih.gov/pubmed/32863204
http://dx.doi.org/10.1016/j.redox.2020.101639
work_keys_str_mv AT alessandromatte fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT francescalupo fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT elenatibaldi fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT marialuisadipaolo fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT enricafederti fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT carpentieriandrea fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT puccipiero fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT mariabrunatianna fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT lucacesaro fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT francescoturrini fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT saulgomezmanzo fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT choisooyoung fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT jaimemarcialquino fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT wonkimdae fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT pantaleoantonella fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT anxiuli fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT iatcenkoiana fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT domenicacappellinimaria fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT lucafornigian fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase
AT luciadefranceschi fynspecificallyregulatestheactivityofredcellglucose6phosphatedehydrogenase