作者
Zacary P Germon, Jonathan R Sillar, Abdul Mannan, Ryan J Duchatel, Dilana Staudt, Heather C Murray, Izac J Findlay, Evangeline R Jackson, Holly P McEwen, Alicia M Douglas, Tabitha McLachlan, John E Schjenken, David A Skerrett-Bryne, Honggang Huang, Marcella N Melo-Braga, Maximilian W Plank, Frank Alvaro, Janis Chamberlain, Geoff De Iuliis, R John Aitken, Brett Nixon, Andrew H Wei, Anoop K Enjeti, Richard B Lock, Martin R Larsen, Heather Lee, Charles E de Bock, Nicole M Verrills, Matthew D Dun
发表日期
2022/3/12
期刊
bioRxiv
页码范围
2022.03. 09.483687
出版商
Cold Spring Harbor Laboratory
简介
FLT3-mutations are diagnosed in 25-30% of patients with acute myeloid leukemia (AML) and are associated with a poor prognosis. AML is associated with the overproduction of reactive oxygen species (ROS), which drives genomic instability through the oxidation of DNA bases, promoting clonal evolution, treatment resistance and poor outcomes. ROS are also important second messengers, triggering cysteine oxidation in redox sensitive signaling proteins, however, the specific pathways influenced by ROS in AML remain enigmatic. Here we have surveyed the posttranslational architecture of primary AML patient samples and assessed oncogenic second messenger signaling. Signaling proteins responsible for growth and proliferation were differentially oxidized and phosphorylated between patient subtypes either harboring recuring mutation in FLT3 compared to patients expressing the wildtype-FLT3 receptor, particularly those mapping to the Src family kinases (SFKs). Patients harboring FLT3-mutations also showed increased oxidative posttranslational modifications in the GTPase Rac activated-NADPH oxidase-2 (NOX2) complex to drive autocratic ROS production. Pharmacological and molecular inhibition of NOX2 was cytotoxic specifically to FLT3-mutant AMLs, and reduced phosphorylation of the critical hematopoietic transcription factor STAT5 and MAPK/ERK to synergistically increase sensitivity to FLT3-inhibitors. NOX2 inhibition also reduced phosphorylation and cysteine oxidation of FLT3 in patient derived xenograft mouse models in vivo, highlighting an important link between oxidative stress and oncogenic signaling. Together, these …
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