Inflammatory signaling pathways play a role in SYK inhibitor resistant AML
Abstract
Abstract Trials have shown promising clinical activity of the selective SYK inhibitor entospletinib in patients with high expressing HOXA9/MEIS1 acute leukemias. As the development of resistance mechanisms is a common problem in the use of targeted drugs, we performed a chemical library screen to identify drug sensitivities in SYK inhibitor resistant AML cells. We identified that SYK inhibitor resistant cells displayed an increased sensitivity to glucocorticoids. Glucocorticoids are potent immunosuppressants which work in part by inhibiting the transcription of cytokine genes. RNA sequencing of entospletinib resistant cells revealed a strong enrichment of inflammatory response and TNFα signaling via NF-κB gene sets in comparison to naive cells. Naive AML cells treated with entospletinib showed a strong downregulation of the same gene sets which were upregulated in the resistant state. Our data suggest that inflammatory signaling pathways play a role in entospletinib resistant AML cells.
Article Details
Authors (13)
Sarah Tausch
Christina Villinger
Gabriela Alexe
Department of Pediatric Oncology, Dana-Farber Cancer Institute
Daniel J. Urban
Min Shen
Dominique Jahn
Frankfurt Cancer Institute, Goethe University Frankfurt
Jonas Vischedyk
Sebastian Scheich
Department of Medicine 2, Hematology/Oncology, University Medical Center Frankfurt, Goethe University
Hubert Serve
Matthew D. Hall
Kimberly Stegmaier
Department of Pediatric Oncology, Dana-Farber Cancer Institute
Thomas Oellerich
Department of Medicine 2, Hematology/Oncology, University Medical Center Frankfurt, Goethe University
Anjali Cremer