Aldehyde dehydrogenase 3a2 protects AML cells from oxidative death and the synthetic lethality of ferroptosis inducers

Author:

Yusuf Rushdia Zareen123,Saez Borja123,Sharda Azeem123,van Gastel Nick123ORCID,Yu Vionnie W. C.123ORCID,Baryawno Ninib123,Scadden Elizabeth W.123,Acharya Sanket123,Chattophadhyay Shrikanta4,Huang Cherrie4,Viswanathan Vasanthi4ORCID,S'aulis Dana5,Cobert Julien123,Sykes David B.123ORCID,Keibler Mark A.6,Das Sudeshna7,Hutchinson John N.8ORCID,Churchill Michael123ORCID,Mukherjee Siddhartha123,Lee Dongjun123ORCID,Mercier Francois123,Doench John4,Bullinger Lars9,Logan David J.4,Schreiber Stuart4,Stephanopoulos Gregory6,Rizzo William B.5,Scadden David T.123

Affiliation:

1. Center for Regenerative Medicine, Massachusetts General Hospital, Boston, MA;

2. Department of Stem Cell and Regenerative Biology and

3. Harvard Stem Cell Institute, Harvard University, Cambridge, MA;

4. Broad Institute of Massachusetts Institute of Technology (MIT) and Harvard, Cambridge, MA;

5. Department of Pediatrics, University of Nebraska Medical Center, Omaha, NE;

6. Department of Chemical Engineering, MIT, Cambridge, MA;

7. Department of Neurology, Massachusetts General Hospital, Boston, MA;

8. Department of Biostatistics, Harvard T. H. Chan School of Public Health, Boston, MA; and

9. Department of Hematology, Oncology and Tumor Immunology, Charité University Medicine, Berlin, Germany

Abstract

AbstractMetabolic alterations in cancer represent convergent effects of oncogenic mutations. We hypothesized that a metabolism-restricted genetic screen, comparing normal primary mouse hematopoietic cells and their malignant counterparts in an ex vivo system mimicking the bone marrow microenvironment, would define distinctive vulnerabilities in acute myeloid leukemia (AML). Leukemic cells, but not their normal myeloid counterparts, depended on the aldehyde dehydrogenase 3a2 (Aldh3a2) enzyme that oxidizes long-chain aliphatic aldehydes to prevent cellular oxidative damage. Aldehydes are by-products of increased oxidative phosphorylation and nucleotide synthesis in cancer and are generated from lipid peroxides underlying the non–caspase-dependent form of cell death, ferroptosis. Leukemic cell dependence on Aldh3a2 was seen across multiple mouse and human myeloid leukemias. Aldh3a2 inhibition was synthetically lethal with glutathione peroxidase-4 (GPX4) inhibition; GPX4 inhibition is a known trigger of ferroptosis that by itself minimally affects AML cells. Inhibiting Aldh3a2 provides a therapeutic opportunity and a unique synthetic lethality to exploit the distinctive metabolic state of malignant cells.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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