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Nan-Bin Liu

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Open access Jul 2026

Pan-cancer analysis identifies KANSL2 as a cell-cycle–associated regulator of tumor progression and immunity in liver hepatocellular carcinoma

KANSL2, a core component of the NSL histone acetyltransferase complex, has been implicated in tumorigenesis. However, its pan-cancer relevance and functional role in liver hepatocellular carcinoma (LIHC) remain unclear. Multi-omics data from TCGA, GEO, and HPA were integrated to systematically evaluate KANSL2 expression, clinical significance, genomic alterations, and immune associations across cancers. Functional enrichment, immune infiltration analyses, and single-cell transcriptomics were performed. In vitro assays were conducted to validate the biological effects of KANSL2 in LIHC cells. KANSL2 is broadly upregulated across cancers and exhibits strong diagnostic performance. Elevated KANSL2 expression correlates with unfavorable prognosis, particularly in LIHC. Mechanistically, KANSL2 and its co-expressed genes are enriched in cell-cycle progression. KANSL2 expression is also closely associated with immune infiltration and immunoregulatory signaling within the tumor microenvironment, with single-cell data indicating preferential expression in proliferative T-cell subsets. Functional experiments demonstrate that KANSL2 silencing suppresses proliferation, migration, and invasion, and induces G2/M phase arrest in LIHC cells. Notably, its effects on apoptosis are limited, suggesting that KANSL2 primarily drives tumor progression through cell-cycle-dependent mechanisms. This study identifies KANSL2 as a key regulator of tumor progression and immune remodeling in LIHC. By promoting malignancy predominantly via cell-cycle control, KANSL2 represents a promising biomarker for diagnosis and prognosis, and a potential therapeutic target.

Nan-Bin Liu, Kun Li, Jun-Qiao Feng et al. · 0 citations
Open access Jul 2026

BUB3: a novel prognostic biomarker and therapeutic target in hepatocellular carcinoma unveiled by pan-cancer analysis and experimental validation

It is demonstrated that BUB3 plays a critical role in tumor progression and immune regulation and possesses substantial diagnostic and prognostic value, highlighting its potential as both a biomarker for patient stratification and a promising therapeutic target across multiple cancer types.

Xiaona Liu, Yajie Qi, Xinyi Dang et al. · 0 citations
Open access Aug 2026

Integrative multi-omics and experimental validation reveal the oncogenic role of DDX52 in liver hepatocellular carcinoma.

Integrative analyses and experimental validation suggest that DDX52 is a potential prognostic biomarker and therapeutic target in LIHC and its associations with immune features and multiple cancer-related pathways provide hypotheses for future mechanistic investigation.

Chong-Yu Zhang, Qian-Kun Wang, Mengchen Zhu et al. · 0 citations

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