Cdc73 protects Notch-induced T-cell leukemia cells from DNA damage and mitochondrial stress

Author:

Melnick Ashley F.1,Mullin Carea2,Lin Karena1,McCarter Anna C.13ORCID,Liang Shannon3,Liu Yiran E.4ORCID,Wang Qing2,Jerome Nicole A.5ORCID,Choe Elizabeth6,Kunnath Nicholas7ORCID,Bodanapu Geethika8,Akter Fatema3ORCID,Magnuson Brian9,Kumar Surinder10ORCID,Lombard David B.10ORCID,Muntean Andrew G.111,Ljungman Mats112ORCID,Sekiguchi JoAnn513ORCID,Ryan Russell J. H.1511ORCID,Chiang Mark Y.125

Affiliation:

1. 1Cellular and Molecular Biology Program, University of Michigan School of Medicine, Ann Arbor, MI

2. 2Division of Hematology-Oncology, Department of Internal Medicine, University of Michigan School of Medicine, Ann Arbor, MI

3. 3Department of Anesthesiology, Perioperative and Pain Medicine, Stanford University, Stanford, CA

4. 4Cancer Biology Program, Stanford University, Stanford, CA

5. 5Cancer Biology Program, University of Michigan School of Medicine, Ann Arbor, MI

6. 6Department of Computational Medicine and Bioinformatics, University of Michigan, Ann Arbor, MI

7. 7Center for Healthcare Outcomes and Policy, University of Michigan School of Medicine, Ann Arbor, MI

8. 8School of Medicine, Boston University Chobanian & Avedisian School of Medicine, Boston, MA

9. 9Michigan Center for Translational Pathology, University of Michigan School of Medicine, Ann Arbor, MI

10. 10Department of Pathology and Laboratory Medicine and Sylvester Comprehensive Cancer Center, Miller School of Medicine, University of Miami, Miami, FL

11. 11Department of Pathology, University of Michigan, Ann Arbor, MI

12. 12Department of Radiology Oncology, University of Michigan School of Medicine, Ann Arbor, MI

13. 13Department of Human Genetics, University of Michigan School of Medicine, Ann Arbor, MI

Abstract

Abstract Activated Notch signaling is highly prevalent in T-cell acute lymphoblastic leukemia (T-ALL), but pan-Notch inhibitors showed excessive toxicity in clinical trials. To find alternative ways to target Notch signals, we investigated cell division cycle 73 (Cdc73), which is a Notch cofactor and key component of the RNA polymerase–associated transcriptional machinery, an emerging target in T-ALL. Although we confirmed previous work that CDC73 interacts with NOTCH1, we also found that the interaction in T-ALL was context-dependent and facilitated by the transcription factor ETS1. Using mouse models, we showed that Cdc73 is important for Notch-induced T-cell development and T-ALL maintenance. Mechanistically, chromatin and nascent gene expression profiling showed that Cdc73 intersects with Ets1 and Notch at chromatin within enhancers to activate expression of known T-ALL oncogenes through its enhancer functions. Cdc73 also intersects with these factors within promoters to activate transcription of genes that are important for DNA repair and oxidative phosphorylation through its gene body functions. Consistently, Cdc73 deletion induced DNA damage and apoptosis and impaired mitochondrial function. The CDC73-induced DNA repair expression program co-opted by NOTCH1 is more highly expressed in T-ALL than in any other cancer. These data suggest that Cdc73 might induce a gene expression program that was eventually intersected and hijacked by oncogenic Notch to augment proliferation and mitigate the genotoxic and metabolic stresses of elevated Notch signaling. Our report supports studying factors such as CDC73 that intersect with Notch to derive a basic scientific understanding on how to combat Notch-dependent cancers without directly targeting the Notch complex.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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