AI Article Synopsis

  • The study explores how genomic and transcriptomic changes impact the proteins expressed in lung squamous cell cancer (SCC) by analyzing data from 108 patients.
  • Three proteomic subtypes are identified: Inflamed and Redox, which together make up 87% of the tumors. The Inflamed subtype shows higher immune cell presence and PD-1 expression, while the Redox subtype is linked to specific metabolic pathways and gene alterations.
  • Although the subtypes don’t directly correlate with patient survival, the presence of B-cell-rich structures in the Inflamed subtype is linked to better survival outcomes, and the research highlights potential therapeutic targets in the Redox group related to metabolism.

Article Abstract

How genomic and transcriptomic alterations affect the functional proteome in lung cancer is not fully understood. Here, we integrate DNA copy number, somatic mutations, RNA-sequencing, and expression proteomics in a cohort of 108 squamous cell lung cancer (SCC) patients. We identify three proteomic subtypes, two of which (Inflamed, Redox) comprise 87% of tumors. The Inflamed subtype is enriched with neutrophils, B-cells, and monocytes and expresses more PD-1. Redox tumours are enriched for oxidation-reduction and glutathione pathways and harbor more NFE2L2/KEAP1 alterations and copy gain in the 3q2 locus. Proteomic subtypes are not associated with patient survival. However, B-cell-rich tertiary lymph node structures, more common in Inflamed, are associated with better survival. We identify metabolic vulnerabilities (TP63, PSAT1, and TFRC) in Redox. Our work provides a powerful resource for lung SCC biology and suggests therapeutic opportunities based on redox metabolism and immune cell infiltrates.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6687710PMC
http://dx.doi.org/10.1038/s41467-019-11452-xDOI Listing

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