This study delineates distinct genomic landscapes associated with PD-L1 expression, suggesting PD-L1-positive status is linked to an immune-active, kinase-signaling-driven phenotype with mutually exclusive drivers, and PD-L1-negative status correlates with a more immunosuppressive, co-mutation-prone, metabolism-oriented profiles and immune suppression.
Abstract
Background The tumor immune microenvironment influences non-small cell lung cancer (NSCLC) progression and therapy response. Programmed death-ligand 1 (PD-L1) is a key biomarker for immune checkpoint blockade, yet the genomic correlates of its expression status require elucidation. Methods We analyzed 97 advanced lung adenocarcinoma patients, (13 cases—all from the PD-L1-unknown subgroup—excluded due to insufficient sequencing quality, leaving 84 cases for downstream analyses) categorized by PD-L1 expression (positive: n=32; negative: n=45; unknown: n=20). Genomic profiling was performed using a 95-gene targeted NGS panel. Analyses included mutational profiling, pathway enrichment (GO/KEGG), gene interaction patterns, and genomic complexity. Results The cohort was predominantly metastatic (99.0%). Dominant mutations were in EGFR(43.80%), TP53(38.02%), and KRAS(11.57%). PD-L1-positive tumors more frequently harbored EGFRE746_A750del, while TP53 mutations were enriched in PD-L1-negative cases. Somatic interaction analysis revealed significant EGFR/TP53 co-occurrence in PD-L1-positive tumors and TP53/RB1 co-occurrence in negative tumors. GO analysis showed PD-L1-positive tumors were enriched for kinase-related functions, reflecting a distinct EGFR-driven biology characterized by a striking 59.26% prevalence of EGFR mutations. KEGG analysis indicated immune pathway enrichment in this subgroup, supporting an oncogene-induced immune phenotype frequently synergized by TP53 co-alterations. In contrast, PD-L1-negative tumors correlated with co-mutation-prone, metabolism-oriented profiles and immune suppression. Mutual exclusivity patterns differed: in PD-L1-positive tumors, EGFRmutations were mutually exclusive with KRAS/NRAS/HRASmutations, suggesting a single dominant driver. PD-L1-negative tumors displayed more co-occurring alterations (e.g., TP53 with STK11 or PTEN). Furthermore, 24% of PD-L1-positive tumors had multiple concurrent alterations, a proportion significantly higher than in PD-L1-negative tumors (8%; P<0.05). Conclusion This study delineates distinct genomic landscapes associated with PD-L1 expression. PD-L1-positive status is linked to an immune-active, kinase-signaling-driven phenotype with mutually exclusive drivers. PD-L1-negative status correlates with a more immunosuppressive, co-mutation-prone, and metabolism-oriented profile. These findings provide molecular insights into immune heterogeneity and may inform tailored combination therapies.
Background: Although high PD-L1 expression correlates with improved outcomes to immune checkpoint inhibitor (ICI), it remains an imperfect predictive biomarker. DNA damage response (DDR) pathway alterations are closely associated with antitumor immunity, shaping tumor immunogenicity and the immune microenvironment. Thi...
Fang Hao, Lin-Lin Zhang, Dian-Sheng Zhong· Current Oncology· 0 citations
Background: Lung cancer remains the leading cause of cancer-related mortality, with non-small cell lung cancer (NSCLC) accounting for approximately 85% of cases. Over the past decade, immune checkpoint inhibitors have become a core component of first-line treatment for advanced-stage NSCLC lacking driver mutations. Pro...
E. Asarkaya, Hatice Asoglu, Abdurrahman Aykut et al.· Journal of Clinical Medicine· 0 citations
Simple Summary Mutations in the KRAS gene are common in metastatic lung cancer and may influence how the disease behaves and responds to treatment. In this study, we compared KRAS mutations detected in tumor tissue with those found in blood samples using circulating tumor DNA (ctDNA), a minimally invasive “liquid biops...
Valentina Buzzi, G. Berti, Michele Santillo et al.· Cancers· 0 citations
BACKGROUND
Gastric cancer (GC) remains a major therapeutic challenge. Although alterations in the RAS pathway occur in over 50% of tumors, only a limited proportion are clinically actionable. We investigated whether KRAS expression complements genomic profiling for patient stratification and therapeutic vulnerability i...
Abstract Background/Aim: In breast cancer, knowledge of the associations between clinicopathologic characteristics, genetic changes, and subtype-specific patterns is expanding. This study investigated how pathological and clinical variables affect the actionability of Next Generation Sequencing (NGS)-based tumor molecu...
E. Papadopoulou, M. Stathoulopoulou, M. Matiatou et al.· Cancer Genomics & Proteomics· 0 citations
BACKGROUND
Transformed small-cell lung cancer (T-SCLC) is an increasingly recognized resistance mechanism in EGFR-mutant lung adenocarcinoma. This study aimed to identify early predictors of histologic transformation and evaluate post-transformation treatment outcomes.
METHODS
We retrospectively collected 163 T-SCLC...