RSK1 is an exploitable dependency in myeloproliferative neoplasms and secondary acute myeloid leukemia

Tim Kong(Washington University in St. Louis), Angelo B. A. Laranjeira(Washington University in St. Louis), Christopher T. Letson(Washington University in St. Louis), LaYow Yu(Washington University in St. Louis), Shuyang Lin(Washington University in St. Louis), Jared S. Fowles(Washington University in St. Louis), Daniel A.C. Fisher(Washington University in St. Louis), Sherwin Ng(Washington University in St. Louis), Wei Yang(Washington University in St. Louis), Fan He(Washington University in St. Louis), M. Youn(Stanford University), Kailen Mark(Stanford University), Ana San Jose(Stanford University), Jingxian Liu(James S. McDonnell Foundation), Alexander B. Kim(Washington University in St. Louis), Maggie J. Cox(Washington University in St. Louis), Mary C. Fulbright(Washington University in St. Louis), Aarthi Jayanthan(Quantum Design (United States)), Gerrit Los(Quantum Design (United States)), Stacey Rentschler(Washington University in St. Louis), Li Ding(James S. McDonnell Foundation), Kathleen M. Sakamoto(Stanford University), Sandra E. Dunn(Quantum Design (United States)), Grant A. Challen(Washington University in St. Louis), Stephen T. Oh(Washington University in St. Louis)
Nature Communications
January 16, 2025
Cited by 13Open Access
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Abstract

Myeloid malignancies are heterogenous disorders characterized by distinct molecular drivers but share convergence of oncogenic signaling pathways and propagation by ripe pro-inflammatory niches. Here, we establish a comprehensive transcriptional atlas across the spectrum of myeloproliferative neoplasms (MPN) and secondary acute myeloid leukemia (sAML) through RNA-sequencing of 158 primary samples encompassing CD34+ hematopoietic stem/progenitor cells and CD14+ monocytes. Supported by mass cytometry (CyTOF) profiling, we reveal aberrant networks of PI3K/AKT/mTOR signalling and NFκB-mediated hyper-inflammation. Combining ATAC-Seq, CUT&Tag, RNA-seq, and CyTOF, we demonstrate that targeting of ribosomal protein S6 kinase A1 (RSK1) suppresses NFκB activation and diminishes pro-inflammatory mediators including tumor necrosis factor (TNF) associated with MPN disease severity and transformation. We further evaluate a therapeutic approach utilizing a first-in-class RSK inhibitor, PMD-026, currently in Phase 2 development for breast cancer, for use in myeloid malignancies. Treatment with PMD-026 suppressed disease burden across seven syngeneic and patient-derived xenograft leukemia mouse models spanning the spectrum of driver and disease-modifying mutations. These findings uncover a therapeutic avenue for a conserved dependency across MPN and sAML. Secondary acute myeloid leukemias (sAMLs) evolving from myeloproliferative neoplasms (MPNs) associate with poor prognosis. Here authors identify RSK1 as a vulnerability for MPN and sAML and show the efficacy of a first-in-class RSK inhibitor, PMD-026, against these types of myeloid malignancies.


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