Arginine dependency is a therapeutically exploitable vulnerability in chronic myeloid leukaemic stem cells

Author:

Rattigan Kevin M1ORCID,Zarou Martha M1ORCID,Brabcova Zuzana1,Prasad Bodhayan1ORCID,Zerbst Désirée1,Sarnello Daniele1ORCID,Kalkman Eric R1ORCID,Ianniciello Angela1ORCID,Scott Mary T1,Dunn Karen2,Shokry Engy3,Sumpton David3ORCID,Copland Mhairi2,Tardito Saverio13ORCID,Vande Voorde Johan3,Mussai Francis4ORCID,Cheng Paul5,Helgason G Vignir1ORCID

Affiliation:

1. Wolfson Wohl Cancer Research Centre, School of Cancer Sciences University of Glasgow Glasgow UK

2. Paul O'Gorman Leukaemia Research Centre, School of Cancer Sciences University of Glasgow Glasgow UK

3. Cancer Research UK Beatson Institute Glasgow UK

4. Institute of Immunology and Immunotherapy University of Birmingham Birmingham UK

5. Bio‐cancer Treatment International Ltd, Hong Kong Science Park Shatin New Territories Hong Kong

Abstract

AbstractTo fuel accelerated proliferation, leukaemic cells undergo metabolic deregulation, which can result in specific nutrient dependencies. Here, we perform an amino acid drop‐out screen and apply pre‐clinical models of chronic phase chronic myeloid leukaemia (CML) to identify arginine as a nutrient essential for primary human CML cells. Analysis of the Microarray Innovations in Leukaemia (MILE) dataset uncovers reduced ASS1 levels in CML compared to most other leukaemia types. Stable isotope tracing reveals repressed activity of all urea cycle enzymes in patient‐derived CML CD34+ cells, rendering them arginine auxotrophic. Thus, arginine deprivation completely blocks proliferation of CML CD34+ cells and induces significantly higher levels of apoptosis when compared to arginine‐deprived cell lines. Similarly, primary CML cells, but not normal CD34+ samples, are particularly sensitive to treatment with the arginine‐depleting enzyme, BCT‐100, which induces apoptosis and reduces clonogenicity. Moreover, BCT‐100 is highly efficacious in a patient‐derived xenograft model, causing > 90% reduction in the number of human leukaemic stem cells (LSCs). These findings indicate arginine depletion to be a promising and novel strategy to eradicate therapy resistant LSCs.

Funder

Blood Cancer UK

Cancer Research UK

NHS Greater Glasgow and Clyde

Tenovus

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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