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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.
Abstract:
Background/Objectives: Incomptine A (IA) has cytotoxic activity in non-Hodgkin lymphoma (NHL) cancer cell lines. Its effects on U-937 cells include induction of apoptosis, production of reactive oxygen species, and inhibition of glycolytic enzymes. We examined the altered protein levels present in the lymph nodes of an in vivo mouse model. Methods: We induced an in vivo model with Balb/c mice with U-937 cells and treated it with IA or methotrexate, as well as healthy mice. We determined expressed proteins by TMT based on the LC-MS/MS method (Data are available via ProteomeXchange with identifier PXD060392) and a molecular docking study targeting 15 deregulated proteins. We developed analyses through the KEGG, Reactome, and Gene Ontology databases. Results: A total of 2717 proteins from the axillary and inguinal lymph nodes were analyzed and compared with healthy mice. Of 412 differentially expressed proteins, 132 were overexpressed (FC ≥ 1.5) and 117 were underexpressed (FC ≤ 0.67). This altered expression was associated with 20 significantly enriched processes, including chromatin remodeling, transcription, translation, metabolic and energetic processes, oxidative phosphorylation, glycolysis/gluconeogenesis, cell proliferation, cytoskeletal organization, and with cell death with necroptosis. Conclusions: We confirmed the previously observed dose-dependent effect of IA as a secondary metabolite with important potential as an anticancer agent for the treatment of NHL, showing that the type of drug or the anatomical location influences the response to treatment. The IA promises to be a likely safer and more effective treatment to improve outcomes, reduce toxicities, and improve survival in patients with NHL, initially targeting histones and transcription factors that will affect cell death proteins.
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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