ABL1 and ABL2 promote medulloblastoma leptomeningeal dissemination

Author:

Jones Jill K12,Zhang Hengshan2,Lyne Anne-Marie345,Cavalli Florence M G345,Hassen Wafa E2,Stevenson Kevin6,Kornahrens Reb2,Yang Yuanfan27,Li Sean28,Dell Samuel29,Reitman Zachary J10,Herndon James E11,Hoj Jacob12,Pendergast Ann Marie12,Thompson Eric M21314ORCID

Affiliation:

1. Harvard/MIT MD-PhD Program , Boston, MA , USA

2. Department of Neurosurgery, Duke University , Durham, NC , USA

3. Institut Curie, PSL Research University , Paris , France

4. Inserm, U900 , Paris , France

5. MINES ParisTech, CBI – Centre for Computational Biology, PL Research University , Paris , France

6. Duke University Molecular Physiology Institute , Durham, NC , USA

7. Department of Neurosurgery, The University of Alabama at Birmingham , Birmingham, AL , USA

8. Case Western University School of Medicine , Cleveland, OH , USA

9. Division of Hematologic Malignancies and Cellular Therapy, Duke Cancer Institute

10. Department of Radiation Oncology, Duke University School of Medicine , Durham, NC , USA

11. Department of Biostatistics and Bioinformatics, Duke University School of Medicine , Durham, NC , USA

12. Department of Pharmacology and Cancer Biology, Duke University , Durham, NC , USA

13. Preston Robert Tisch Brain Tumor Center, Duke University , Durham, NC , USA

14. Department of Neurosurgery, The University of Chicago , Chicago, IL , USA

Abstract

Abstract Background Medulloblastoma is the most common malignant pediatric brain tumor, and leptomeningeal dissemination (LMD) of medulloblastoma both portends a poorer prognosis at diagnosis and is incurable at recurrence. The biological mechanisms underlying LMD are unclear. The Abelson (ABL) tyrosine kinase family members, ABL1 and ABL2, have been implicated in cancer cell migration, invasion, adhesion, metastasis, and chemotherapy resistance, and are upstream mediators of the oncogene c-MYC in fibroblasts and lung cancer cells. However, their role in medulloblastoma has not yet been explored. The purpose of this work was to elucidate the role of ABL1/2 in medulloblastoma LMD. Methods ABL1 and ABL2 mRNA expression of patient specimens was analyzed. shRNA knockdowns of ABL1/2 and pharmacologic inhibition of ABL1/2 were used for in vitro and in vivo analyses of medulloblastoma LMD. RNA sequencing of ABL1/2 genetic knockdown versus scrambled control medulloblastoma was completed. Results ABL1/2 mRNA is highly expressed in human medulloblastoma and pharmacologic inhibition of ABL kinases resulted in cytotoxicity. Knockdown of ABL1/2 resulted in decreased adhesion of medulloblastoma cells to the extracellular matrix protein, vitronectin (P = .0013), and significantly decreased tumor burden in a mouse model of medulloblastoma LMD with improved overall survival (P = .0044). Furthermore, both pharmacologic inhibition of ABL1/2 and ABL1/2 knockdown resulted in decreased expression of c-MYC, identifying a putative signaling pathway, and genes/pathways related to oncogenesis and neurodevelopment were differentially expressed between ABL1/2 knockdown and control medulloblastoma cells. Conclusions ABL1 and ABL2 have potential roles in medulloblastoma LMD upstream of c-MYC expression.

Funder

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Surgery,Oncology,Neurology (clinical)

Reference45 articles.

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