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April 26, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

Genomic characterization of pulmonary sarcomatoid adenocarcinoma: a paired whole-exome sequencing study of carcinomatous and sarcomatous components

JLJing LinYYYuzhong YangMLMengqing Liu

Key Points

  • This research aims to explore the genomic differences between the carcinomatous and sarcomatous components of pulmonary sarcomatoid adenocarcinoma.
  • Performed whole-exome sequencing on microdissected carcinomatous and sarcomatous components from six cases.
  • Utilized histopathology and immunohistochemistry for phenotypic characterization.
  • Applied bioinformatics for somatic mutation identification and gene set enrichment analysis.
  • Identified 133 non-synonymous variants across 34 genes, with 34.3% shared, 29.3% CA-specific, and 36.5% SA-specific.
  • Missense mutations made up 71.4% of the identified variants.
  • Notable gene alterations included TP53 and KRAS with component-specific distributions, linking chromatin remodeling and EMT features.

Abstract

Background Pulmonary sarcomatoid carcinoma (PSC) is a rare and highly aggressive subtype of non-small cell lung cancer characterized by the coexistence of carcinomatous (CA) and sarcomatous (SA) components. Their clonal relationship and genomic divergence remain poorly defined, particularly in adenocarcinoma-derived PSC. Methods We performed comparative whole-exome sequencing (WES) on microdissected CA and SA components from six pulmonary sarcomatoid adenocarcinomas (PSAdC). Histopathology and immunohistochemistry were used to characterize epithelial and mesenchymal phenotypes. Somatic mutations were identified using a standard bioinformatics pipeline, followed by gene set enrichment analysis with g:Profiler. Results WES identified 133 non-synonymous variants across 34 genes (181 mutational events). Of these, 34.3% were shared, 29.3% were CA-specific, and 36.5% were SA-specific, indicating marked intratumor heterogeneity. Missense mutations predominated (71.4%). Recurrently altered genes included PCLO, CPS1, FAT1, PDE4DIP , and ARID1B , while canonical drivers TP53 and KRAS showed component-specific distributions. Enrichment analysis revealed over-representation of pathways related to multicellular organism development, chromatin remodeling, transcription factor binding, and DNA double-strand break repair, as well as non-small cell lung cancer signaling. These alterations correlated with epithelial–mesenchymal transition (EMT) features in SA components, including vimentin upregulation and E-cadherin loss. Conclusions PSAdC exhibits a monoclonal origin with subsequent genomic diversification between components. Microdissection-based WES reveals pronounced spatial heterogeneity and lineage-specific mutations. Dysregulated chromatin remodeling and DNA repair pathways, together with EMT-associated phenotypes, provide a mechanistic framework for sarcomatoid differentiation and lineage plasticity in this aggressive tumor subtype.

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Cite This Study

Lin et al. (2026) studied this question.

synapsesocial.com/papers/69edaafc4a46254e215b33d7https://doi.org/10.3389/fonc.2026.1796428
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