Evidence map›Paper›PMID 42204603›Full record

ArticleMolecular cancer2026

AcTor, a novel mTOR stimulator, potentiates ixazomib for the treatment of acute myeloid leukemia.

Shakti P Pattanayak, Odai Darawshi, Omid Hajihassani, Jordan M Winter, Nicole Weiler, Melanie Ott, Florian Rothweiler, Jindrich Cinatl, Martin Michaelis, Daniel J Lindner and 8 more

Abstract read
In one paragraph

Article in Molecular cancer, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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2 · The registry

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3 · Its place in the literature

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4 · The record

Corrections and comments

5 · Who and what money

Authors and funding

18 authors.

Shakti P PattanayakDepartment of Biochemistry, Case Western Reserve University School of Medicine, Cleveland, OH, USA.
Odai DarawshiDepartment of Biochemistry and Molecular Biology, Medical University of South Carolina, Charleston, SC, USA.
Omid HajihassaniDepartment of Surgery, University Hospital, Cleveland, OH, USA.
Jordan M WinterDepartment of Surgery, University Hospital, Cleveland, OH, USA.
Nicole WeilerDr Petra Joh Research Institute, Frankfurt am Main, Germany.
Melanie OttDr Petra Joh Research Institute, Frankfurt am Main, Germany.
Florian RothweilerDr Petra Joh Research Institute, Frankfurt am Main, Germany.
Jindrich CinatlDr Petra Joh Research Institute, Frankfurt am Main, Germany.
Martin MichaelisDr Petra Joh Research Institute, Frankfurt am Main, Germany.
Daniel J LindnerDepartment of Translational Hematology and Oncology Research, Taussig Cancer Institute, Cleveland Clinic, Cleveland, OH, USA.
Thomas D GreenDepartment of Internal Medicine, Atrium Health Wake Forest Baptist Comprehensive Cancer Center, Wake Forest University School of Medicine, Winston- Salem, NC, USA.
Polina KrassovskaiaDepartment of Cancer Biology, Atrium Health Wake Forest Baptist Comprehensive Cancer Center, Wake Forest University School of Medicine, Winston-Salem, NC, USA.
Raphael T ArulebaDepartment of Cancer Biology, Atrium Health Wake Forest Baptist Comprehensive Cancer Center, Wake Forest University School of Medicine, Winston-Salem, NC, USA.
Kelsey H Fisher-WellmanDepartment of Cancer Biology, Atrium Health Wake Forest Baptist Comprehensive Cancer Center, Wake Forest University School of Medicine, Winston-Salem, NC, USA.
Jason A MearsDepartment of Pharmacology, Case Western Reserve University, Cleveland, OH, USA.
David WaldDepartment of Pathology, Case Western Reserve University, Cleveland, OH, USA.
Leif A ErikssonDepartment of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg, Sweden.
Boaz TiroshDepartment of Biochemistry, Case Western Reserve University School of Medicine, Cleveland, OH, USA. bxt213@case.edu.

Funding

TUMOR METABOLISM PROGRAMP30CA043703 · NCI · CASE WESTERN RESERVE UNIVERSITY · PI Amar Desai · 1987 to 2026
$142.3M
Creating a transient metabolic catastrophe for AML therapyR01CA299332 · NCI · CASE WESTERN RESERVE UNIVERSITY · PI Kelsey H Fisher-Wellman, Boaz Tirosh · 2025 to 2026
$967k
International Myeloma Foundation Brian D. Novis Senior AwardNCI NIH HHS P30 CA043703NCI NIH HHS R01 CA299332NIH HHS 1R01CA299332
6 · The paper itself

Abstract

backgroundmTORC1 activity is oncogenic. However, in the presence of chemotherapy, suppression of mTORC1 is cytoprotective. mTOR suppression requires an intact tuberous sclerosis complex (TSC), composed of TSC1, TSC2 and TBC1D7. Small molecules that activate mTOR by blocking the TSC are lacking.

methodsWe applied in silico docking and medicinal chemistry to generate AcTor, a potential first-of-its-kind TSC2 inhibitor. Because inhibition of TSC2 results in increased sensitivity to proteasome inhibitors, we combined AcTor and the proteasome inhibitor ixazomib (IXZ) in various cancer cell types.

resultsPotentiation of cytotoxic activity of IXZ by AcTor was observed across multiple acute myeloid leukemia (AML) cell lines and primary patient samples. The combination triggered a collapse of mitochondrial respiratory capacity, loss of mitochondrial membrane potential, accumulation of ROS and apoptosis. These attributes increased in drug-resistant AML. Transcriptomic profiling revealed that AcTor alone induced anabolic and oxidative phosphorylation programs, whereas AcTor/IXZ redirected the signaling towards stress-associated and pro-apoptotic transcriptional states, including a p53 pathway signature. In vivo studies revealed reduction in AML burden, depletion of blasts and of leukemic stem cells, and retention of activity upon relapse. AcTor/IXZ was equally potent in a TP53-mutated patient-derived xenograft model, exceeding the efficacy of standard-of-care.

conclusionsAs a TSC2 inhibitor, AcTor should not be used alone in cancer. When combined with proteasome inhibitors, the pharmacodynamics of AcTor shifts towards the development of a mitochondrial catastrophe in AML, which is durable, broad range, agnostic to TP53 mutations and to the acquisition of resistance to common clinical anti-AML drugs.

Indexed as

Antineoplastic AgentsBoron CompoundsGlycineLeukemia, Myeloid, AcuteTOR Serine-Threonine KinasesAnimalsApoptosisCell Line, TumorDrug SynergismHumansMembrane Potential, MitochondrialMiceSignal TransductionXenograft Model Antitumor AssaysAntineoplastic AgentsBoron CompoundsGlycineixazomibMTOR protein, humanTOR Serine-Threonine Kinases

Identifiers

PMID42204603
PMCPMC13436024

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.