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RET-mediated autophagy suppression as targetable co-dependence in acute myeloid leukemia
S Rudat1,2, A Pfaus1, Y Y Cheng1,2
1Division of Translational Oncology, National Center for Tumor Diseases (NCT) Heidelberg and German Cancer Research Center (DKFZ), Heidelberg, Germany.
Abstract:
Many cases of AML are associated with mutational activation of receptor tyrosine kinases (RTKs) such as FLT3. However, RTK inhibitors have limited clinical efficacy as single agents, indicating that AML is driven by concomitant activation of different signaling molecules. We used a functional genomic approach to identify RET, encoding an RTK, as an essential gene in multiple subtypes of AML, and observed that AML cells show activation of RET signaling via ARTN/GFRA3 and NRTN/GFRA2 ligand/co-receptor complexes. Interrogation of downstream pathways identified mTORC1-mediated suppression of autophagy and subsequent stabilization of leukemogenic drivers such as mutant FLT3 as important RET effectors. Accordingly, genetic or pharmacologic RET inhibition impaired the growth of FLT3-dependent AML cell lines and was accompanied by upregulation of autophagy and FLT3 depletion. RET dependence was also evident in mouse models of AML and primary AML patient samples, and transcriptome and immunohistochemistry analyses identified elevated RET mRNA levels and co-expression of RET and FLT3 proteins in a substantial proportion of AML patients. Our results indicate that RET-mTORC1 signaling promotes AML through autophagy suppression, suggesting that targeting RET or, more broadly, depletion of leukemogenic drivers via autophagy induction provides a therapeutic opportunity in a relevant subset of AML patients.
Insights
This study reveals that RET receptor tyrosine kinase (RTK) signaling drives acute myeloid leukemia (AML) by suppressing autophagy. Targeting RET or inducing autophagy may offer new therapeutic strategies for AML patients.
Area of Science:
- Oncology
- Molecular Biology
- Signal Transduction
Background:
- Acute myeloid leukemia (AML) often involves mutations in receptor tyrosine kinases (RTKs) like FLT3.
- Single-agent RTK inhibitors show limited efficacy, suggesting multiple signaling pathways are involved in AML pathogenesis.
Purpose of the Study:
- To identify novel essential genes and signaling pathways in AML.
- To investigate the role of RET receptor tyrosine kinase (RTK) signaling in AML.
- To explore therapeutic strategies targeting RET signaling in AML.
Main Methods:
- Functional genomic screening to identify essential genes in AML.
- Analysis of RET signaling activation via ligand/co-receptor complexes (ARTN/GFRA3, NRTN/GFRA2).
- Interrogation of downstream pathways, including mTORC1 and autophagy.
- In vitro studies using AML cell lines and in vivo studies using mouse models.
- Transcriptome and immunohistochemistry analyses of patient samples.
Main Results:
- RET was identified as an essential gene in multiple AML subtypes.
- AML cells exhibit activated RET signaling, promoting leukemogenesis through mTORC1-mediated autophagy suppression.
- RET inhibition led to autophagy upregulation and FLT3 depletion, impairing AML cell growth.
- Elevated RET mRNA and co-expression of RET and FLT3 proteins were observed in a significant proportion of AML patients.
Conclusions:
- RET-mTORC1 signaling is a key driver in a subset of AML by suppressing autophagy.
- Targeting RET or inducing autophagy presents a potential therapeutic avenue for AML patients with activated RET signaling.
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