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.

Computation (Basel, Switzerland)
|June 28, 2024
PubMed

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.

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