BACKGROUND
Breast cancer (BC) remains a significant global health threat with complex pathogenesis often linked to chemotherapy resistance and inflammatory microenvironments. Histidine triad nucleotide-binding protein 2 (HINT2) is a mitochondrial protein involved in metabolism and immunity, but its specific role in BC and potential as a therapeutic target require further elucidation.
OBJECTIVES
This study aimed to identify novel therapeutic targets for BC and evaluate the anti-tumor efficacy and molecular mechanisms of Albiflorin (Al), a natural monoterpene glycoside.
METHODS
Proteomic profiling was performed on BC xenografts in nude mice to identify differentially expressed proteins. In-vivo and in-vitro models (MDA-MB-231 cells) were established to assess the effects of Al (20 mg/kg or 20 µM) on tumor growth, apoptosis and cytokine production. Molecular docking and co-immunoprecipitation (Co-IP) were used to investigate the interactions among HINT2, NLRP3 and Al.
RESULTS
HINT2 was significantly upregulated in BC tissues and identified as a primary pro-tumorigenic factor. Co-IP confirmed an endogenous interaction between HINT2 and NLRP3. Al exhibited strong binding affinity to HINT2 (-7.36 kcal/mol) and significantly suppressed tumor volume and weight. Furthermore, Al treatment downregulated the HINT2/NLRP3 axis, reduced inflammatory cytokines (IL-1β, IL-6, TNF-α) and promoted apoptosis by modulating Caspase-3, Bax and Bcl-2 levels.
CONCLUSION
Albiflorin suppresses BC progression by inhibiting the HINT2/NLRP3 signaling pathway, suggesting HINT2 is a viable biomarker and Al a promising therapeutic agent for BC treatment.
Background Melanoma is highly invasive with poor advanced-stage prognosis and remarkable heterogeneity of the tumor immune microenvironment. Lysine crotonylation regulates tumor progression and immune processes, yet its role in melanoma remains unclear. Purpose This study aims to explore the value of crotonylation-related genes in melanoma. Patients and Methods Transcriptomic data of 471 melanoma samples from the TCGA database were utilized. Consensus clustering was performed based on 2971 crotonylation-related genes. Differential analysis, WGCNA and LASSO regression were combined to construct a prognostic model, followed by analyses of the immune microenvironment and drug sensitivity. Molecular docking and cellular experiments were adopted to investigate the core gene SEPTIN1. Results Melanoma patients were classified into two subtypes (C1 and C2). Patients in the high-risk group of the established prognostic model exhibited shorter overall survival. SEPTIN1 was correlated with prognosis, immune microenvironment and TMZ response. TMZ could downregulate the expression of SEPTIN1, and overexpression of SEPTIN1 reversed the anti-tumor effect of TMZ. Conclusion Expression signatures of crotonylation-related genes can be applied to molecular subtyping, immune microenvironment dissection and prognostic stratification of melanoma, providing potential clues for individualized diagnosis and treatment of melanoma.
Chen Li, Xin-Yu Cui, Yong Yang et al.· International Journal of Gen...· 0 citations
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