Asparagine transport through SLC1A5/ASCT2 and SLC38A5/SNAT5 is essential for BCP‐ALL cell survival and a potential therapeutic target

Author:

Taurino Giuseppe1,Dander Erica2,Chiu Martina1,Pozzi Giulia3,Maccari Chiara4,Starace Rita2,Silvestri Daniela2,Griffini Erika1,Bianchi Massimiliano G.15,Carubbi Cecilia3,Andreoli Roberta46,Mirandola Prisco3,Valsecchi Maria Grazia78,Rizzari Carmelo9,D'Amico Giovanna2,Bussolati Ovidio15ORCID

Affiliation:

1. Laboratory of General Pathology, Department of Medicine and Surgery University of Parma Parma Italy

2. Tettamanti Center, Fondazione IRCCS San Gerardo Dei Tintori Monza Italy

3. Laboratory of Human Anatomy, Department of Medicine and Surgery University of Parma Parma Italy

4. Laboratory of Industrial Toxicology, Department of Medicine and Surgery University of Parma Parma Italy

5. MRH—Microbiome Research Hub, Parco Area Delle Scienze 11/A University of Parma Parma Italy

6. CERT–Center of Excellence for Toxicological Research University of Parma Parma Italy

7. Biostatistics and Clinical Epidemiology Fondazione IRCCS San Gerardo Dei Tintori Monza Italy

8. School of Medicine and Surgery University of Milano‐Bicocca Milan Italy

9. Department of Pediatrics Fondazione IRCCS San Gerardo Dei Tintori Monza Italy

Abstract

SummaryB‐cell precursor acute lymphoblastic leukaemia (BCP‐ALL) blasts strictly depend on the transport of extra‐cellular asparagine (Asn), yielding a rationale for L‐asparaginase (ASNase) therapy. However, the carriers used by ALL blasts for Asn transport have not been identified yet. Exploiting RS4;11 cells as BCP‐ALL model, we have found that cell Asn is lowered by either silencing or inhibition of the transporters ASCT2 or SNAT5. The inhibitors V‐9302 (for ASCT2) and GluγHA (for SNAT5) markedly lower cell proliferation and, when used together, suppress mTOR activity, induce autophagy and cause a severe nutritional stress, leading to a proliferative arrest and a massive cell death in both the ASNase‐sensitive RS4;11 cells and the relatively ASNase‐insensitive NALM‐6 cells. The cytotoxic effect is not prevented by coculturing leukaemic cells with primary mesenchymal stromal cells. Leukaemic blasts of paediatric ALL patients express ASCT2 and SNAT5 at diagnosis and undergo marked cytotoxicity when exposed to the inhibitors. ASCT2 expression is positively correlated with the minimal residual disease at the end of the induction therapy. In conclusion, ASCT2 and SNAT5 are the carriers exploited by ALL cells to transport Asn, and ASCT2 expression is associated with a lower therapeutic response. ASCT2 may thus represent a novel therapeutic target in BCP‐ALL.

Funder

International Myeloma Foundation

Associazione Italiana per la Ricerca sul Cancro

Publisher

Wiley

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