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PMID: 41748936 Published · epublish English

FLT3-SYK inhibitor and Ixazomib combination impact HOXA and oxidative stress control by β-catenin, SQSTM1 and NRF2 in AML.

NPJ precision oncology ·Vol. 10 ·No. 1 ·2026-02-26

Pasupuleti SK, Rangaraju S, Layer J, Padam KSR, Cripe LD, Sayar H, Sargent KJ, Weisenbach J, Konig H, Salman H, Ramdas B, Palam LR, Mayo LD, Khan I, Davé UP, Boswell HS, Kapur R

Abstract

Acute myeloid leukemia (AML) is sustained by oncogenic signaling and stress-adaptive networks that enable proliferative sustenance and therapeutic resistance. Transcriptomic profiling of AML blasts revealed upregulation of FLT3, SYK, HOXA9/10, and CTNNB1 with elevated oxidative phosphorylation (OXPHOS). Proteasome inhibition induced phosphorylation-dependent ubiquitination and nuclear export of β-catenin, triggering stress signaling (p62/SQSTM1/c-JUN/NRF2) and apoptosis in FLT3ITD mutant AML blasts. Dual targeting of FLT3/SYK (TAK-659) and the proteasome (Ixazomib) showed strong synergy across genetically defined AML subsets, irrespective of FLT3 mutant status. In Tet2-/-;Flt3ITD AML-transplanted mice models, combination therapy markedly reduced leukemic burden, restored CD45.1⁺ normal hematopoiesis, corrected disease-associated cytopenias, and normalized hematopoietic stem and progenitor composition. In our phase I/II clinical trial, this combination therapy induced rapid leukemic clearance, early transcriptional silencing of HOXA/FLT3/NRF2 programs, and durable hematologic responses in refractory AML patients. These findings define a therapeutically targetable axis linking FLT3/SYK/β-catenin signaling to stress adaptation, provide a mechanistic basis for combinatorial targeting in high-risk AML. Trial registration: NCT04079738, Date of registration 03 September 2019.

Article Info
Journal
NPJ precision oncology
Abbr.
NPJ Precis Oncol
ISSN
2397-768X
Corresponding email
Published
2026-02-26
Language
English
Country/Region
England
NLM ID
101708166
Analysis Services
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