STAT3 is a biologically relevant therapeutic target in H3K27M-mutant diffuse midline glioma

Author:

Zhang Liang1,Nesvick Cody L1,Day Charlie A2,Choi Jonghoon1,Lu Victor M3,Peterson Timothy4,Power Erica A5,Anderson Jacob B67,Hamdan Feda H8,Decker Paul A9,Simons Renae10,Welby John P6,Siada Ruby6,Ge Jizhi1,Kaptzan Tatiana1,Johnsen Steven A811,Hinchcliffe Edward H2,Daniels David J112

Affiliation:

1. Department of Neurologic Surgery, Mayo Clinic , Rochester, Minnesota , USA

2. Section of Cellular Dynamics, The Hormel Institute, University of Minnesota , Austin, Minnesota , USA

3. Department of Neurological Surgery, University of Miami Miller School of Medicine , Miami, Florida , USA

4. Department of Cardiac Regeneration Program, Mayo Clinic , Rochester, Minnesota , USA

5. Mayo Clinic Graduate School of Biomedical Sciences , Rochester, Minnesota , USA

6. Mayo Clinic Alix School of Medicine, Mayo Clinic , Rochester, Minnesota , USA

7. Mayo Clinic College of Medicine and Science Medical Scientist Training Program , Rochester, MN , USA

8. Department of Gastroenterology, Mayo Clinic , Rochester, Minnesota , USA

9. Department of Biostatistics, Mayo Clinic , Rochester, Minnesota , USA

10. Campbell University Jerry M. Wallace School of Osteopathic Medicine , Buies Creek, North Carolina , USA

11. Robert Bosch Center for Tumor Diseases , Stuttgart , Germany

12. Molecular Pharmacology and Experimental Therapeutics Program, Mayo Clinic , Rochester, Minnesota , USA

Abstract

Abstract Background H3K27M-mutant diffuse midline glioma (DMG) is a lethal brain tumor that usually occurs in children. Despite advances in our understanding of its underlying biology, efficacious therapies are severely lacking. Methods We screened a library of drugs either FDA-approved or in clinical trial using a library of patient-derived H3K27M-mutant DMG cell lines with cell viability as the outcome. Results were validated for clinical relevance and mechanistic importance using patient specimens from biopsy and autopsy, patient-derived cell lines, inhibition by gene knockdown and small molecule inhibitors, and patient-derived xenografts. Results Kinase inhibitors were highly toxic to H3K27M-mutant DMG cells. Within this class, STAT3 inhibitors demonstrated robust cytotoxic activity in vitro. Mechanistic analyses revealed one form of activated STAT3, phospho-tyrosine- 705 STAT3 (pSTAT3), was selectively upregulated in H3K27M-mutant cell lines and clinical specimens. STAT3 inhibition by CRISPR/Cas9 knockout, shRNA or small molecule inhibition reduced cell viability in vitro, and partially restored expression of the polycomb repressive mark H3K27me3, which is classically lost in H3K27M-mutant DMG. Putative STAT3-regulated genes were enriched in an H3K27M-knockout DMG cell line, indicating relative gain of STAT3 signaling in K27M-mutant cells. Treatment of patient-derived intracranial xenografts with WP1066, a STAT3 pathway inhibitor currently in clinical use for pediatric brain tumors, resulted in stasis of tumor growth, and increased overall survival. Finally, pSTAT3(Y705) was detected in circulating plasma extracellular vesicles of patients with H3K27M-mutant DMG. Conclusions STAT3 is a biologically relevant therapeutic target in H3K27M-mutant DMG. STAT3 inhibition should be considered in future clinical trials.

Funder

National Institute of Neurological Disorders and Stroke

National Center for Advancing Translational Sciences

National Institute of General Medical Sciences

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,Neurology (clinical),Oncology

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