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.

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.

Related Concept Videos

Pharmacogenetics of Drug Targets: β₂-Adrenergic Receptors, Apo E, Thymidylate Synthase01:11

Pharmacogenetics of Drug Targets: β₂-Adrenergic Receptors, Apo E, Thymidylate Synthase

Genetic polymorphisms in drug targets have emerged as critical determinants of interindividual variability in drug response and toxicity. Pharmacogenomic investigations increasingly focus on identifying these variations to personalize and optimize therapeutic interventions. A drug target may be a receptor, enzyme, or signaling protein involved in pharmacologic responses or disease-related pathways. While early pharmacogenetic studies focused primarily on drug metabolism, current research...
Targeted Cancer Therapies02:57

Targeted Cancer Therapies

The targeted cancer therapies, also known as “molecular targeted therapies,” take advantage of the molecular and genetic differences between the cancer cells and the normal cells. It needs a thorough understanding of the cancer cells to develop drugs that can target specific molecular aspects that drive the growth, progression, and spread of cancer cells without affecting the growth and survival of other normal cells in the body.
There are several types of targeted therapies against specific...
Combination Therapies and Personalized Medicine02:50

Combination Therapies and Personalized Medicine

Combining two or more treatment methods increases the life span of cancer patients while reducing damage to vital organs or tissue from the overuse of a single treatment. Combination therapy also targets different cancer-inducing pathways, thus reducing the chances of developing resistance to treatment.
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...