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ALL blasts drive primary mesenchymal stromal cells to increase asparagine availability during asparaginase treatment

Mechanisms underlying the resistance of acute lymphoblastic leukemia (ALL) blasts to l-asparaginase are still incompletely known. Here we demonstrate that human primary bone marrow mesenchymal stromal cells (MSCs) successfully adapt to l-asparaginase and markedly protect leukemic blasts from the enz...

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Autores principales: Chiu, Martina, Taurino, Giuseppe, Dander, Erica, Bardelli, Donatella, Fallati, Alessandra, Andreoli, Roberta, Bianchi, Massimiliano G., Carubbi, Cecilia, Pozzi, Giulia, Galuppo, Laura, Mirandola, Prisco, Rizzari, Carmelo, Tardito, Saverio, Biondi, Andrea, D’Amico, Giovanna, Bussolati, Ovidio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Hematology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9153005/
https://www.ncbi.nlm.nih.gov/pubmed/34614505
http://dx.doi.org/10.1182/bloodadvances.2020004041
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author Chiu, Martina
Taurino, Giuseppe
Dander, Erica
Bardelli, Donatella
Fallati, Alessandra
Andreoli, Roberta
Bianchi, Massimiliano G.
Carubbi, Cecilia
Pozzi, Giulia
Galuppo, Laura
Mirandola, Prisco
Rizzari, Carmelo
Tardito, Saverio
Biondi, Andrea
D’Amico, Giovanna
Bussolati, Ovidio
author_facet Chiu, Martina
Taurino, Giuseppe
Dander, Erica
Bardelli, Donatella
Fallati, Alessandra
Andreoli, Roberta
Bianchi, Massimiliano G.
Carubbi, Cecilia
Pozzi, Giulia
Galuppo, Laura
Mirandola, Prisco
Rizzari, Carmelo
Tardito, Saverio
Biondi, Andrea
D’Amico, Giovanna
Bussolati, Ovidio
author_sort Chiu, Martina
collection PubMed
description Mechanisms underlying the resistance of acute lymphoblastic leukemia (ALL) blasts to l-asparaginase are still incompletely known. Here we demonstrate that human primary bone marrow mesenchymal stromal cells (MSCs) successfully adapt to l-asparaginase and markedly protect leukemic blasts from the enzyme-dependent cytotoxicity through an amino acid trade-off. ALL blasts synthesize and secrete glutamine, thus increasing extracellular glutamine availability for stromal cells. In turn, MSCs use glutamine, either synthesized through glutamine synthetase (GS) or imported, to produce asparagine, which is then extruded to sustain asparagine-auxotroph leukemic cells. GS inhibition prevents mesenchymal cells adaptation to l-asparaginase, lowers glutamine secretion by ALL blasts, and markedly hinders the protection exerted by MSCs on leukemic cells. The pro-survival amino acid exchange is hindered by the inhibition or silencing of the asparagine efflux transporter SNAT5, which is induced in mesenchymal cells by ALL blasts. Consistently, primary MSCs from ALL patients express higher levels of SNAT5 (P < .05), secrete more asparagine (P < .05), and protect leukemic blasts (P < .05) better than MSCs isolated from healthy donors. In conclusion, ALL blasts arrange a pro-leukemic amino acid trade-off with bone marrow mesenchymal cells, which depends on GS and SNAT5 and promotes leukemic cell survival during l-asparaginase treatment.
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spelling pubmed-91530052022-05-31 ALL blasts drive primary mesenchymal stromal cells to increase asparagine availability during asparaginase treatment Chiu, Martina Taurino, Giuseppe Dander, Erica Bardelli, Donatella Fallati, Alessandra Andreoli, Roberta Bianchi, Massimiliano G. Carubbi, Cecilia Pozzi, Giulia Galuppo, Laura Mirandola, Prisco Rizzari, Carmelo Tardito, Saverio Biondi, Andrea D’Amico, Giovanna Bussolati, Ovidio Blood Adv Lymphoid Neoplasia Mechanisms underlying the resistance of acute lymphoblastic leukemia (ALL) blasts to l-asparaginase are still incompletely known. Here we demonstrate that human primary bone marrow mesenchymal stromal cells (MSCs) successfully adapt to l-asparaginase and markedly protect leukemic blasts from the enzyme-dependent cytotoxicity through an amino acid trade-off. ALL blasts synthesize and secrete glutamine, thus increasing extracellular glutamine availability for stromal cells. In turn, MSCs use glutamine, either synthesized through glutamine synthetase (GS) or imported, to produce asparagine, which is then extruded to sustain asparagine-auxotroph leukemic cells. GS inhibition prevents mesenchymal cells adaptation to l-asparaginase, lowers glutamine secretion by ALL blasts, and markedly hinders the protection exerted by MSCs on leukemic cells. The pro-survival amino acid exchange is hindered by the inhibition or silencing of the asparagine efflux transporter SNAT5, which is induced in mesenchymal cells by ALL blasts. Consistently, primary MSCs from ALL patients express higher levels of SNAT5 (P < .05), secrete more asparagine (P < .05), and protect leukemic blasts (P < .05) better than MSCs isolated from healthy donors. In conclusion, ALL blasts arrange a pro-leukemic amino acid trade-off with bone marrow mesenchymal cells, which depends on GS and SNAT5 and promotes leukemic cell survival during l-asparaginase treatment. American Society of Hematology 2021-12-07 /pmc/articles/PMC9153005/ /pubmed/34614505 http://dx.doi.org/10.1182/bloodadvances.2020004041 Text en © 2021 by The American Society of Hematology. Licensed under Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), permitting only noncommercial, nonderivative use with attribution. All other rights reserved.
spellingShingle Lymphoid Neoplasia
Chiu, Martina
Taurino, Giuseppe
Dander, Erica
Bardelli, Donatella
Fallati, Alessandra
Andreoli, Roberta
Bianchi, Massimiliano G.
Carubbi, Cecilia
Pozzi, Giulia
Galuppo, Laura
Mirandola, Prisco
Rizzari, Carmelo
Tardito, Saverio
Biondi, Andrea
D’Amico, Giovanna
Bussolati, Ovidio
ALL blasts drive primary mesenchymal stromal cells to increase asparagine availability during asparaginase treatment
title ALL blasts drive primary mesenchymal stromal cells to increase asparagine availability during asparaginase treatment
title_full ALL blasts drive primary mesenchymal stromal cells to increase asparagine availability during asparaginase treatment
title_fullStr ALL blasts drive primary mesenchymal stromal cells to increase asparagine availability during asparaginase treatment
title_full_unstemmed ALL blasts drive primary mesenchymal stromal cells to increase asparagine availability during asparaginase treatment
title_short ALL blasts drive primary mesenchymal stromal cells to increase asparagine availability during asparaginase treatment
title_sort all blasts drive primary mesenchymal stromal cells to increase asparagine availability during asparaginase treatment
topic Lymphoid Neoplasia
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9153005/
https://www.ncbi.nlm.nih.gov/pubmed/34614505
http://dx.doi.org/10.1182/bloodadvances.2020004041
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