FoxA1 and FoxA2 drive gastric differentiation and suppress squamous identity in NKX2-1-negative lung cancer

FoxA1 和 FoxA2 驱动胃分化并抑制 NKX2-1 阴性肺癌中的鳞状细胞特性

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作者:Soledad A Camolotto ,Shrivatsav Pattabiraman # ,Timothy L Mosbruger # ,Alex Jones ,Veronika K Belova ,Grace Orstad ,Mitchell Streiff ,Lydia Salmond ,Chris Stubben ,Klaus H Kaestner ,Eric L Snyder

Abstract

Changes in cancer cell identity can alter malignant potential and therapeutic response. Loss of the pulmonary lineage specifier NKX2-1 augments the growth of KRAS-driven lung adenocarcinoma and causes pulmonary to gastric transdifferentiation. Here, we show that the transcription factors FoxA1 and FoxA2 are required for initiation of mucinous NKX2-1-negative lung adenocarcinomas in the mouse and for activation of their gastric differentiation program. Foxa1/2 deletion severely impairs tumor initiation and causes a proximal shift in cellular identity, yielding tumors expressing markers of the squamocolumnar junction of the gastrointestinal tract. In contrast, we observe downregulation of FoxA1/2 expression in the squamous component of both murine and human lung adenosquamous carcinoma. Using sequential in vivo recombination, we find that FoxA1/2 loss in established KRAS-driven neoplasia originating from SPC-positive alveolar cells induces keratinizing squamous cell carcinomas. Thus, NKX2-1, FoxA1 and FoxA2 coordinately regulate the growth and identity of lung cancer in a context-specific manner. Keywords: FoxA1; FoxA2; NKX2-1; cancer biology; human; lineage switching; lung cancer; mouse.

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