Related Experiment Video
Updated: Jun 22, 2025

Pre-clinical Evaluation of Tyrosine Kinase Inhibitors for Treatment of Acute Leukemia
Published on: September 18, 2013
Design of Inhibitors That Target the Menin-Mixed-Lineage Leukemia Interaction
Moses N Arthur1,2, Kristeen Bebla3,4, Emmanuel Broni3
1Department of Parasitology, Noguchi Memorial Institute for Medical Research (NMIMR), College of Health Sciences (CHS), University of Ghana, Legon, Accra LG 581, Ghana.
Abstract:
The prognosis of mixed-lineage leukemia (MLL) has remained a significant health concern, especially for infants. The minimal treatments available for this aggressive type of leukemia has been an ongoing problem. Chromosomal translocations of the KMT2A gene are known as MLL, which expresses MLL fusion proteins. A protein called menin is an important oncogenic cofactor for these MLL fusion proteins, thus providing a new avenue for treatments against this subset of acute leukemias. In this study, we report results using the structure-based drug design (SBDD) approach to discover potential novel MLL-mediated leukemia inhibitors from natural products against menin. The three-dimensional (3D) protein model was derived from Protein Databank (Protein ID: 4GQ4), and EasyModeller 4.0 and I-TASSER were used to fix missing residues during rebuilding. Out of the ten protein models generated (five from EasyModeller and I-TASSER each), one model was selected. The selected model demonstrated the most reasonable quality and had 75.5% of residues in the most favored regions, 18.3% of residues in additionally allowed regions, 3.3% of residues in generously allowed regions, and 2.9% of residues in disallowed regions. A ligand library containing 25,131 ligands from a Chinese database was virtually screened using AutoDock Vina, in addition to three known menin inhibitors. The top 10 compounds including ZINC000103526876, ZINC000095913861, ZINC000095912705, ZINC000085530497, ZINC000095912718, ZINC000070451048, ZINC000085530488, ZINC000095912706, ZINC000103580868, and ZINC000103584057 had binding energies of -11.0, -10.7, -10.6, -10.2, -10.2, -9.9, -9.9, -9.9, -9.9, and -9.9 kcal/mol, respectively. To confirm the stability of the menin-ligand complexes and the binding mechanisms, molecular dynamics simulations including molecular mechanics Poisson-Boltzmann surface area (MM/PBSA) computations were performed. The amino acid residues that were found to be potentially crucial in ligand binding included Phe243, Met283, Cys246, Tyr281, Ala247, Ser160, Asn287, Asp185, Ser183, Tyr328, Asn249, His186, Leu182, Ile248, and Pro250. MI-2-2 and PubChem CIDs 71777742 and 36294 were shown to possess anti-menin properties; thus, this justifies a need to experimentally determine the activity of the identified compounds. The compounds identified herein were found to have good pharmacological profiles and had negligible toxicity. Additionally, these compounds were predicted as antileukemic, antineoplastic, chemopreventive, and apoptotic agents. The 10 natural compounds can be further explored as potential novel agents for the effective treatment of MLL-mediated leukemia.
Insights
Researchers discovered novel natural compounds that inhibit menin, a key protein in mixed-lineage leukemia (MLL). These compounds show promise as potential new treatments for MLL, a challenging infant leukemia.
Area of Science:
- Biochemistry
- Pharmacology
- Computational Chemistry
Background:
- Mixed-lineage leukemia (MLL) poses a significant therapeutic challenge, particularly in infants, due to limited treatment options.
- MLL is characterized by chromosomal translocations involving the KMT2A gene, leading to oncogenic MLL fusion proteins.
- The menin protein acts as a crucial oncogenic cofactor for MLL fusion proteins, presenting a viable target for novel anti-leukemia therapies.
Purpose of the Study:
- To identify novel inhibitors of the menin protein using a structure-based drug design (SBDD) approach.
- To discover potential therapeutic agents for MLL-mediated leukemia from natural product libraries.
Main Methods:
- Generated a 3D protein model of menin (Protein ID: 4GQ4) using EasyModeller 4.0 and I-TASSER.
- Virtually screened a library of 25,131 natural ligands against the menin protein using AutoDock Vina.
- Performed molecular dynamics simulations and MM/PBSA computations to assess the stability and binding mechanisms of menin-ligand complexes.
Main Results:
- Identified 10 top-ranking natural compounds with significant binding energies to menin, including ZINC000103526876 (-11.0 kcal/mol).
- Determined crucial amino acid residues involved in ligand binding, such as Phe243, Met283, and Cys246.
- Confirmed anti-menin properties for specific compounds (MI-2-2, PubChem CIDs 71777742, 36294) and predicted favorable pharmacological profiles with negligible toxicity.
Conclusions:
- The identified natural compounds demonstrate potential as novel therapeutic agents for MLL-mediated leukemia.
- Further experimental validation is warranted to confirm the anti-leukemic activity of these promising compounds.
- These findings support the exploration of natural products as a source for developing effective treatments against MLL.
More Related Videos
Related Concept Videos
Inhibition of Cdk Activity
Targeted Cancer Therapies
There are several types of targeted therapies against...
Combination Therapies and Personalized Medicine
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...
Drugs that Stabilize Microtubules

