Metabolic reprogramming of cancer cells by JMJD6-mediated pre-mRNA splicing associated with therapeutic response to splicing inhibitor

Author:

Jablonowski Carolyn M1,Quarni Waise1,Singh Shivendra1,Tan Haiyan2,Bostanthirige Dhanushka Hewa1,Jin Hongjian3,Fang Jie1,Chang Ti-Cheng3,Finkelstein David3,Cho Ji-Hoon2,Hu Dongli1,Pagala Vishwajeeth2,Sakurada Sadie Miki4,Pruett-Miller Shondra M4ORCID,Wang Ruoning5ORCID,Murphy Andrew1ORCID,Freeman Kevin6,Peng Junmin7,Davidoff Andrew M189,Wu Gang3,Yang Jun18910ORCID

Affiliation:

1. Department of Surgery, St Jude Children’s Research Hospital

2. Center for Proteomics and Metabolomics, St Jude Children's Research Hospital

3. Center for Applied Bioinformatics, St Jude Children’s Research Hospital

4. Department of Cell and Molecular Biology, St Jude Children's Research Hospital

5. Center for Childhood Cancer and Blood Disease, Abigail Wexner Research Institute, Nationwide Children’s Hospital

6. Genetics, Genomics & Informatics, The University of Tennessee Health Science Center (UTHSC)

7. Department of Structural Biology, St Jude Children’s Research Hospital

8. St Jude Graduate School of Biomedical Sciences, St Jude Children’s Research Hospital

9. Department of Pathology and Laboratory Medicine, College of Medicine, The University of Tennessee Health Science Center

10. College of Graduate Health Sciences, University of Tennessee Health Science Center

Abstract

Dysregulated pre-mRNA splicing and metabolism are two hallmarks of MYC-driven cancers. Pharmacological inhibition of both processes has been extensively investigated as potential therapeutic avenues in preclinical and clinical studies. However, how pre-mRNA splicing and metabolism are orchestrated in response to oncogenic stress and therapies is poorly understood. Here, we demonstrate that jumonji domain containing 6, arginine demethylase, and lysine hydroxylase, JMJD6, acts as a hub connecting splicing and metabolism in MYC-driven human neuroblastoma. JMJD6 cooperates with MYC in cellular transformation of murine neural crest cells by physically interacting with RNA binding proteins involved in pre-mRNA splicing and protein homeostasis. Notably, JMJD6 controls the alternative splicing of two isoforms of glutaminase (GLS), namely kidney-type glutaminase (KGA) and glutaminase C (GAC), which are rate-limiting enzymes of glutaminolysis in the central carbon metabolism in neuroblastoma. Further, we show that JMJD6 is correlated with the anti-cancer activity of indisulam, a ‘molecular glue’ that degrades splicing factor RBM39, which complexes with JMJD6. The indisulam-mediated cancer cell killing is at least partly dependent on the glutamine-related metabolic pathway mediated by JMJD6. Our findings reveal a cancer-promoting metabolic program is associated with alternative pre-mRNA splicing through JMJD6, providing a rationale to target JMJD6 as a therapeutic avenue for treating MYC-driven cancers.

Funder

American Cancer Society

National Cancer Institute

American Lebanese Syrian Associated Charities

Publisher

eLife Sciences Publications, Ltd

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