Background Esophageal squamous cell carcinoma (ESCC) has high mortality, and metastasis is the leading cause of patient death. Neuromedin B (NMB) promotes tumor development in various cancers, yet its role in ESCC metastasis remains unclear. Methods We integrated single-cell transcriptomic data from matched primary and metastatic ESCC lesions (GSE309392) with bulk transcriptomic cohorts from TCGA and GSE53624. In silico gene perturbation, ligand-receptor communication analysis, and single-cell prognostic model construction were performed, followed by functional validation through siRNA-mediated NMB knockdown in TE-1 and KYSE30 cell lines. Results NMB was identified as a key gene enriched in metastatic ESCC lesions, and its high expression was associated with coordinated upregulation of oxidative phosphorylation pathway genes and aldo-keto reductase family antioxidant enzymes (AKR1C1, AKR1C2, AKR1B10). Genomic analysis revealed that NMB-high tumors carried a higher clonal mutation burden and a markedly increased frequency of NFE2L2 activating mutations (23% vs. 8%, P = 0.04). In silico knockout and correlation analysis identified AKR1C1 as a downstream effector of NMB. NMB expression was negatively correlated with CD8+ T cell and activated NK cell infiltration. CellChat analysis revealed communication between NMB-positive cells and monocytes via the TGM2–ADGRG1 axis, and specifically detected IFNG signaling. In the single-cell prognostic model, NMB-positive cells accounted for 50% of the high-risk group but only 20% of the low-risk group. TCGA-based survival analysis demonstrated that high NMB expression was associated with shorter overall survival (HR = 2.98, P = 0.03). In vitro NMB-targeted RNA interference markedly inhibited proliferation, colony formation, and migration in TE-1 and KYSE30 cells. CMap screening identified the endothelin-PDE5-cGMP axis as a potential therapeutic target. Conclusion NMB serves as a key driver of metastatic adaptation in ESCC, conferring a survival advantage to tumor cells during metastatic colonization through genomic evolution and immune remodeling, with metabolic adaptation as a downstream consequence of genomic alterations.
Zhi-Kai Cao, Dong-Chen Tian, Long He et al.· Frontiers in Cell and Develo...· 0 citations
Laryngeal squamous cell carcinoma (LSCC), the most common subtype of laryngeal cancer, often exhibits poor responsiveness to conventional therapies. Although circRNAs have been implicated in various malignancies, their roles in LSCC remain incompletely understood. This study aimed to investigate the function and underlying mechanism of circ_0075961 in LSCC progression. Expression levels of circ_0075961 and ZEB1 were measured in 32 paired LSCC and ANT tissues using RT-qPCR. Functional assays, including CCK-8, colony formation, and transwell assays, were conducted to assess cell proliferation, migration, and invasion. The interaction between circ_0075961 and ZEB1 was validated by RIP assay. EMT-related protein expression was evaluated by WB. Additionally, a xenograft mouse model was used to verify the role of ZEB1 in vivo. The results showed that circ_0075961 and ZEB1 were significantly upregulated in LSCC tissues and cell lines. Knockdown of circ_0075961 or ZEB1 significantly inhibited the proliferation, migration, and invasion of LSCC cells. Mechanistically, circ_0075961 appeared to regulate these phenotypes by modulating the EMT process through ZEB1. Knockdown of circ_0075961 led to increased E-cadherin and decreased ZEB1, N-cadherin, and Vimentin expression. In vivo, ZEB1 knockdown markedly suppressed tumor growth in a xenograft model. In conclusion, circ_0075961 is associated with malignant phenotypes in LSCC, including tumor cell proliferation, migration, invasion, and EMT, with these effects potentially linked to ZEB1 regulation. These findings suggest that circ_0075961 may serve as a potential therapeutic target and a promising candidate for further exploration as a biomarker, providing new insights into LSCC treatment strategies.
Sen Zhang, Xian Wu, Jianrui Pan et al.· Scientific Reports· 0 citations
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