| Literature DB >> 29431743 |
Nimitha R Mathew1,2, Francis Baumgartner1, Lukas Braun1, David O'Sullivan3, Simone Thomas4, Miguel Waterhouse1, Tony A Müller1, Kathrin Hanke1,2, Sanaz Taromi1, Petya Apostolova1, Anna L Illert1, Wolfgang Melchinger1, Sandra Duquesne1, Annette Schmitt-Graeff5, Lena Osswald1, Kai-Li Yan1, Arnim Weber6, Sonia Tugues7, Sabine Spath7, Dietmar Pfeifer1, Marie Follo1, Rainer Claus1, Michael Lübbert1, Christoph Rummelt1, Hartmut Bertz1, Ralph Wäsch1, Johanna Haag1, Andrea Schmidts1, Michael Schultheiss8, Dominik Bettinger8, Robert Thimme8, Evelyn Ullrich9, Yakup Tanriver6,10, Giang Lam Vuong11, Renate Arnold11, Philipp Hemmati11, Dominik Wolf12, Markus Ditschkowski13, Cordula Jilg14, Konrad Wilhelm14, Christian Leiber14, Sabine Gerull15, Jörg Halter15, Claudia Lengerke15, Thomas Pabst16, Thomas Schroeder17, Guido Kobbe17, Wolf Rösler18, Soroush Doostkam19, Stephan Meckel20, Kathleen Stabla21,22, Stephan K Metzelder21,22, Sebastian Halbach23, Tilman Brummer23,24,25,26, Zehan Hu27,28, Joern Dengjel27,28, Björn Hackanson29, Christoph Schmid29, Udo Holtick30, Christof Scheid30, Alexandros Spyridonidis31, Friedrich Stölzel32, Rainer Ordemann32, Lutz P Müller33, Flore Sicre-de-Fontbrune34,35, Gabriele Ihorst36, Jürgen Kuball37, Jan E Ehlert38, Daniel Feger38, Eva-Maria Wagner39, Jean-Yves Cahn40, Jacqueline Schnell41, Florian Kuchenbauer41, Donald Bunjes41, Ronjon Chakraverty42,43, Simon Richardson42,43, Saar Gill44, Nicolaus Kröger45, Francis Ayuk45, Luca Vago46,47,48, Fabio Ciceri46,47,48, Antonia M Müller49, Takeshi Kondo50, Takanori Teshima50, Susan Klaeger26,51, Bernhard Kuster51, Dennis Dong Hwan Kim52, Daniel Weisdorf53, Walter van der Velden54, Daniela Dörfel55, Wolfgang Bethge55, Inken Hilgendorf56, Andreas Hochhaus56, Geoffroy Andrieux24,26,57, Melanie Börries24,26,57, Hauke Busch24,26,57,58, John Magenau59, Pavan Reddy59, Myriam Labopin60, Joseph H Antin61, Andrea S Henden62,63, Geoffrey R Hill62,63,64, Glen A Kennedy64, Merav Bar65, Anita Sarma66, Donal McLornan66, Ghulam Mufti66, Betul Oran67, Katayoun Rezvani67, Omid Shah68, Robert S Negrin68, Arnon Nagler69, Marco Prinz20,25, Andreas Burchert23, Andreas Neubauer21,22, Dietrich Beelen14, Andreas Mackensen19, Nikolas von Bubnoff1, Wolfgang Herr4, Burkhard Becher7, Gerard Socié34,35, Michael A Caligiuri70, Eliana Ruggiero46,47,48, Chiara Bonini46,47,48, Georg Häcker6, Justus Duyster1, Jürgen Finke1, Erika Pearce3, Bruce R Blazar71, Robert Zeiser1,25.
Abstract
Individuals with acute myeloid leukemia (AML) harboring an internal tandem duplication (ITD) in the gene encoding Fms-related tyrosine kinase 3 (FLT3) who relapse after allogeneic hematopoietic cell transplantation (allo-HCT) have a 1-year survival rate below 20%. We observed that sorafenib, a multitargeted tyrosine kinase inhibitor, increased IL-15 production by FLT3-ITD+ leukemia cells. This synergized with the allogeneic CD8+ T cell response, leading to long-term survival in six mouse models of FLT3-ITD+ AML. Sorafenib-related IL-15 production caused an increase in CD8+CD107a+IFN-γ+ T cells with features of longevity (high levels of Bcl-2 and reduced PD-1 levels), which eradicated leukemia in secondary recipients. Mechanistically, sorafenib reduced expression of the transcription factor ATF4, thereby blocking negative regulation of interferon regulatory factor 7 (IRF7) activation, which enhanced IL-15 transcription. Both IRF7 knockdown and ATF4 overexpression in leukemia cells antagonized sorafenib-induced IL-15 production in vitro. Human FLT3-ITD+ AML cells obtained from sorafenib responders following sorafenib therapy showed increased levels of IL-15, phosphorylated IRF7, and a transcriptionally active IRF7 chromatin state. The mitochondrial spare respiratory capacity and glycolytic capacity of CD8+ T cells increased upon sorafenib treatment in sorafenib responders but not in nonresponders. Our findings indicate that the synergism of T cells and sorafenib is mediated via reduced ATF4 expression, causing activation of the IRF7-IL-15 axis in leukemia cells and thereby leading to metabolic reprogramming of leukemia-reactive T cells in humans. Therefore, sorafenib treatment has the potential to contribute to an immune-mediated cure of FLT3-ITD-mutant AML relapse, an otherwise fatal complication after allo-HCT.Entities:
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Year: 2018 PMID: 29431743 PMCID: PMC6029618 DOI: 10.1038/nm.4484
Source DB: PubMed Journal: Nat Med ISSN: 1078-8956 Impact factor: 53.440