Quantitative Proteomics and Molecular Mechanisms of Non-Hodgkin Lymphoma Mice Treated with Incomptine A, Part II

Normand García-Hernández1, Fernando Calzada2, Elihú Bautista3

  • 1Unidad de Investigación Médica en Genética Humana, UMAE Hospital Pediatría 2° Piso, Centro Médico Nacional Siglo XXI, Instituto Mexicano del Seguro Social, Av. Cuauhtémoc 330, Col. Doctores, Mexico City 06725, Mexico.

PubMed

Insights

Incomptine A shows potential as an anticancer drug for non-Hodgkin lymphoma (NHL). This study identified altered protein levels in lymph nodes, suggesting IA targets histones and transcription factors to induce cell death.

Area of Science:

  • Biochemistry
  • Oncology
  • Proteomics

Background:

  • Incomptine A (IA) exhibits cytotoxic effects against non-Hodgkin lymphoma (NHL) cell lines.
  • IA induces apoptosis, reactive oxygen species, and inhibits key glycolytic enzymes in U-937 cells.

Purpose of the Study:

  • To investigate the proteomic alterations in lymph nodes of an in vivo NHL mouse model treated with IA.
  • To identify potential molecular targets and pathways affected by IA treatment in NHL.

Main Methods:

  • An in vivo Balb/c mouse model of NHL (U-937 cells) was established and treated with IA or methotrexate.
  • Proteomic analysis using TMT-based LC-MS/MS identified differentially expressed proteins in lymph nodes.
  • Bioinformatic analyses (KEGG, Reactome, Gene Ontology) and molecular docking were performed.

Main Results:

  • Analysis of 2717 proteins revealed 412 differentially expressed proteins in lymph nodes of IA-treated mice compared to controls.
  • Overexpressed and underexpressed proteins were associated with enriched processes including chromatin remodeling, metabolism, cell proliferation, and necroptosis.
  • Molecular docking targeted 15 deregulated proteins, suggesting specific interactions.

Conclusions:

  • IA demonstrates a dose-dependent effect and potential as an anticancer agent for NHL.
  • Treatment response is influenced by drug type and anatomical location.
  • IA shows promise for improving NHL treatment outcomes by targeting histones and transcription factors, potentially leading to safer and more effective therapy.

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