EYA2 tyrosine phosphatase inhibition reduces MYC and prevents medulloblastoma progression

Author:

Wolin Arthur R12ORCID,Vincent Melanie Y1,Hotz Taylor1,Purdy Stephen C13ORCID,Rosenbaum Sheera R1ORCID,Hughes Connor J145ORCID,Hsu Jessica Y14,Oliphant Michael U J16,Armstrong Brock1,Wessells Veronica7,Varella-Garcia Marileila7ORCID,Galbraith Matthew D18ORCID,Pierce Angela9,Wang Dong9ORCID,Venkataraman Sujatha9ORCID,Danis Etienne1ORCID,Veo Bethany9,Serkova Natalie10,Espinosa Joaquin M18ORCID,Gustafson Daniel L11ORCID,Vibhakar Rajeev9,Ford Heide L123456ORCID

Affiliation:

1. Department of Pharmacology, University of Colorado Anschutz Medical Campus (AMC) , Aurora, Colorado , USA

2. Molecular Biology Graduate Program, University of Colorado AMC , Aurora, Colorado , USA

3. Cancer Biology Graduate Program, University of Colorado AMC , Aurora, Colorado , USA

4. Pharmacology Graduate Program, University of Colorado AMC , Aurora, Colorado , USA

5. Medical Scientist Training Program, University of Colorado AMC , Aurora, Colorado , USA

6. Integrated Physiology Graduate Program, University of Colorado AMC , Aurora, Colorado , USA

7. Department of Medicine, Division of Medical Oncology, University of Colorado AMC , Aurora, Colorado , USA

8. Linda Crnic Institute for Down Syndrome, University of Colorado AMC , Aurora, Colorado , USA

9. Department of Pediatrics, Division of Hematology and Oncology, University of Colorado AMC , Aurora, Colorado , USA

10. Department of Radiology, University of Colorado AMC , Aurora, Colorado , USA

11. Clinical Sciences Department, Colorado State University , Fort Collins, Colorado , USA

Abstract

Abstract Background Medulloblastoma is the most common pediatric brain malignancy. Patients with the Group 3 subtype of medulloblastoma (MB) often exhibit MYC amplification and/or overexpression and have the poorest prognosis. While Group 3 MB is known to be highly dependent on MYC, direct targeting of MYC remains elusive. Methods Patient gene expression data were used to identify highly expressed EYA2 in Group 3 MB samples, assess the correlation between EYA2 and MYC, and examine patient survival. Genetic and pharmacological studies were performed on EYA2 in Group 3 derived MB cell models to assess MYC regulation and viability in vitro and in vivo. Results EYA2 is more highly expressed in Group 3 MB than other MB subgroups and is essential for Group 3 MB growth in vitro and in vivo. EYA2 regulates MYC expression and protein stability in Group 3 MB, resulting in global alterations of MYC transcription. Inhibition of EYA2 tyrosine phosphatase activity, using a novel small molecule inhibitor (NCGC00249987, or 9987), significantly decreases Group 3 MB MYC expression in both flank and intracranial growth in vivo. Human MB RNA-seq data show that EYA2 and MYC are significantly positively correlated, high EYA2 expression is significantly associated with a MYC transcriptional signature, and patients with high EYA2 and MYC expression have worse prognoses than those that do not express both genes at high levels. Conclusions Our data demonstrate that EYA2 is a critical regulator of MYC in Group 3 MB and suggest a novel therapeutic avenue to target this highly lethal disease.

Funder

NIH

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,Neurology (clinical),Oncology

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