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Mapping the ATP-Binding Pockets of FLT3 and TAK1: A Structural Basis for Dual Inhibition by FLT3-Targeted Therapies
Timothy Haystead1,2, Robert Freeze1, Grace Liu3
1Department of Research and Development, Eydis Bio Inc., Durham, North Carolina27701, United States.
Abstract:
Cutting edge protein kinase inhibitors are often plagued by unpredicted off target binding that can limit their therapeutic window, impacting clinical outcomes. However, such off-target binding may provide in vivo clinical evidence supporting therapeutic avenues in nonrelated diseases. We have recently identified off target transforming growth activated kinase beta-1 (TAK1) affinity in FDA approved FLT3 inhibitors. The receptor tyrosine kinase Fms-like tyrosine kinase 3 (FLT3) serves as a key regulator of hematopoietic stem cell survival and proliferation. Unlike FLT3, TAK1 is a serine threonine kinase involved in inflammatory signaling in the MAPK pathway. Despite very little sequence homology between the TAK1 and FLT3, through targeted inhibitor development and kinome wide screening we identified a strong structural homology between the active sites of these two kinases that leads to cross reactivity of several FLT3 inhibitors in clinical use with TAK1. Enzymatic and in silico modeling confirmed binding and affinity of many common FLT3 inhibitors against TAK1. Furthermore, we explored the in vitro implications of off target TAK1 inhibition by FLT3 inhibitors in human PBMCs stimulated with lipopolysaccharides (LPS) on downstream cytokine production. Our results confirm intracellular inhibition of TAK1 by several FLT3 inhibitors in clinical use. Given that FLT3 inhibitors are administered chronically to treat AML, the nonharmful unintended off target inhibition of TAK1 in vivo by current FLT3 inhibitors provides some insight into the safety and tolerability of chronic TAK1 inhibition in patients.
Insights
FDA-approved FLT3 inhibitors unexpectedly bind to TAK1, a kinase involved in inflammation. This cross-reactivity suggests potential safety and tolerability for chronic TAK1 inhibition in patients.
Area of Science:
- Biochemistry
- Pharmacology
- Immunology
Background:
- Protein kinase inhibitors can have off-target binding, impacting therapeutic efficacy.
- Transforming growth activated kinase beta-1 (TAK1) is implicated in inflammatory signaling.
- Fms-like tyrosine kinase 3 (FLT3) inhibitors are used to treat Acute Myeloid Leukemia (AML).
Purpose of the Study:
- To investigate the off-target binding of FDA-approved FLT3 inhibitors to TAK1.
- To explore the implications of this cross-reactivity for therapeutic strategies.
Main Methods:
- Kinome-wide screening to identify off-target affinities.
- Enzymatic assays and in silico modeling to confirm kinase binding.
- In vitro studies using human peripheral blood mononuclear cells (PBMCs) to assess downstream effects.
Main Results:
- Several FDA-approved FLT3 inhibitors demonstrated affinity for TAK1.
- Structural homology between FLT3 and TAK1 active sites explains cross-reactivity.
- FLT3 inhibitors confirmed intracellular inhibition of TAK1 in LPS-stimulated PBMCs.
Conclusions:
- Unintended off-target inhibition of TAK1 by FLT3 inhibitors occurs.
- This finding provides insights into the safety and tolerability of chronic TAK1 inhibition.
- Potential for repurposing FLT3 inhibitors or developing new TAK1-targeting therapies.
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