PRMT5 supports multiple oncogenic pathways in mantle cell lymphoma

Author:

Sloan Shelby L.12ORCID,Brown Fiona1ORCID,Long Mackenzie12,Weigel Christoph1,Koirala Shirsha1,Chung Ji-Hyun1,Pray Betsy12ORCID,Villagomez Lynda3ORCID,Hinterschied Claire1,Sircar Anuvrat1,Helmig-Mason JoBeth1,Prouty Alexander1,Brooks Eric1,Youssef Youssef1,Hanel Walter1,Parekh Samir4,Chan Wing Keung1ORCID,Chen Zhengming5,Lapalombella Rosa1,Sehgal Lalit1ORCID,Vaddi Kris6,Scherle Peggy6,Chen-Kiang Selina7,Di Liberto Maurizio7,Elemento Olivier8,Meydan Cem8ORCID,Foox Jonathan8,Butler Daniel8ORCID,Mason Christopher E.8ORCID,Baiocchi Robert A.1ORCID,Alinari Lapo1

Affiliation:

1. 1Division of Hematology, Department of Internal Medicine, College of Medicine, The Ohio State University, Columbus, OH

2. 2Department of Veterinary Biosciences, College of Veterinary Medicine, The Ohio State University, Columbus, OH

3. 3Division of Hematology and Oncology, Department of Pediatrics, The Ohio State University and Nationwide Children’s Hospital, Columbus, OH

4. 4Department of Medicine, Icahn School of Medicine at Mount Sinai, New York, NY

5. 5Division of Biostatistics, Department of Population Health Sciences, Weill Cornell Medicine, New York, NY

6. 6Prelude Therapeutics, Wilmington, DE

7. 7Department of Pathology and Laboratory Medicine, Weill Cornell Medicine, New York, NY

8. 8Department of Physiology and Biophysics, Institute for Computational Biomedicine, Weill Cornell Medicine, New York, NY

Abstract

Abstract Mantle cell lymphoma (MCL) is an incurable B-cell malignancy with an overall poor prognosis, particularly for patients that progress on targeted therapies. Novel, more durable treatment options are needed for patients with MCL. Protein arginine methyltransferase 5 (PRMT5) is overexpressed in MCL and plays an important oncogenic role in this disease via epigenetic and posttranslational modification of cell cycle regulators, DNA repair genes, components of prosurvival pathways, and RNA splicing regulators. The mechanism of targeting PRMT5 in MCL remains incompletely characterized. Here, we report on the antitumor activity of PRMT5 inhibition in MCL using integrated transcriptomics of in vitro and in vivo models of MCL. Treatment with a selective small-molecule inhibitor of PRMT5, PRT-382, led to growth arrest and cell death and provided a therapeutic benefit in xenografts derived from patients with MCL. Transcriptional reprograming upon PRMT5 inhibition led to restored regulatory activity of the cell cycle (p-RB/E2F), apoptotic cell death (p53-dependent/p53-independent), and activation of negative regulators of B-cell receptor-PI3K/AKT signaling (PHLDA3, PTPROt, and PIK3IP1). We propose pharmacologic inhibition of PRMT5 for patients with relapsed/refractory MCL and identify MTAP/CDKN2A deletion and wild-type TP53 as biomarkers that predict a favorable response. Selective targeting of PRMT5 has significant activity in preclinical models of MCL and warrants further investigation in clinical trials.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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