4.8 Article

The microdissected gene expression landscape of nasopharyngeal cancer reveals vulnerabilities in FGF and noncanonical NF-κB signaling

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SCIENCE ADVANCES
卷 8, 期 14, 页码 -

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciadv.abh2445

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资金

  1. Pathology Department, Stanford University, USA
  2. National Medical Research Council, Singapore [TA20nov-0025, CIRG18nov-0045]
  3. B2B Collaboration Grant from the National University of Singapore
  4. Research Grant Council, Hong Kong (GRF grants) [17161116, 17114818, 117122420]
  5. National Institutes of Health R35 Award [R35DE030054]
  6. Research Grant Council, Hong Kong (CRF grant) [C7027-16G]
  7. Research Grant Council, Hong Kong (NSFC-RGC grant) [N_HKU1735118]

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This study utilizes Smart-3SEQ technology to obtain transcriptome-wide gene expression profiles from microdissected NPC tumors, uncovering changes in key signaling pathways and providing insights into the importance of these pathways in NPC tumorigenesis and development.
Nasopharyngeal cancer (NPC) is an Epstein-Barr virus (EBV)-positive epithelial malignancy with an extensive inflammatory infiltrate. Traditional RNA-sequencing techniques uncovered only microenvironment signatures, while the gene expression of the tumor epithelial compartment has remained a mystery. Here, we use Smart-3SEQ to prepare transcriptome-wide gene expression profiles from microdissected NPC tumors, dysplasia, and normal controls. We describe changes in biological pathways across the normal to tumor spectrum and show that fibroblast growth factor (FGF) ligands are overexpressed in NPC tumors, while negative regulators of FGF signaling, including SPRY1, SPRY2, and LGALS3, are down-regulated early in carcinogenesis. Within the NF-kappa B signaling pathway, the critical noncanonical transcription factors, RELB and NFKB2, are enriched in the majority of NPC tumors. We confirm the responsiveness of EBV-positive NPC cell lines to targeted inhibition of these pathways, reflecting the heterogeneity in NPC patient tumors. Our data comprehensively describe the gene expression landscape of NPC and unravel the mysteries of receptor tyrosine kinase and NF-kappa B pathways in NPC.

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