Exploiting the fibroblast growth factor receptor-1 vulnerability to therapeutically restrict the MYC-EZH2-CDKN1C axis-driven proliferation in Mantle cell lymphoma

Anuvrat Sircar, Satishkumar Singh, Zijun Y. Xu-Monette, Krysta Mila Coyle, Laura K. Hilton, Evangelia Chavdoula, Parvathi Ranganathan, Neeraj Jain, Walter Hanel, Philip Tsichlis, Lapo Alinari, Blake R. Peterson, Jianguo Tao, Natarajan Muthusamy, Robert Baiocchi, Narendranath Epperla, Ken H. Young, Ryan Morin, Lalit Sehgal

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

Mantle cell lymphoma (MCL) is a lethal hematological malignancy with a median survival of 4 years. Its lethality is mainly attributed to a limited understanding of clinical tumor progression and resistance to current therapeutic regimes. Intrinsic, prolonged drug treatment and tumor-microenvironment (TME) facilitated factors impart pro-tumorigenic and drug-insensitivity properties to MCL cells. Hence, elucidating neoteric pharmacotherapeutic molecular targets involved in MCL progression utilizing a global “unified” analysis for improved disease prevention is an earnest need. Using integrated transcriptomic analyses in MCL patients, we identified a Fibroblast Growth Factor Receptor-1 (FGFR1), and analyses of MCL patient samples showed that high FGFR1 expression was associated with shorter overall survival in MCL patient cohorts. Functional studies using pharmacological intervention and loss of function identify a novel MYC-EZH2-CDKN1C axis-driven proliferation in MCL. Further, pharmacological targeting with erdafitinib, a selective small molecule targeting FGFRs, induced cell-cycle arrest and cell death in-vitro, inhibited tumor progression, and improved overall survival in-vivo. We performed extensive pre-clinical assessments in multiple in-vivo model systems to confirm the therapeutic potential of erdafitinib in MCL and demonstrated FGFR1 as a viable therapeutic target in MCL. [Figure not available: see fulltext.].

Original languageEnglish
Pages (from-to)2094-2106
Number of pages13
JournalLeukemia
Volume37
Issue number10
DOIs
StatePublished - Oct 2023

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