Tuft cells transdifferentiate to neural-like progenitor cells in the progression of pancreatic cancer.

在胰腺癌的进展过程中,簇状细胞会转分化为神经样祖细胞

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作者:Salas-Escabillas Daniel J, Hoffman Megan T, Brender Sydney M, Moore Jacee S, Wen Hui-Ju, Benitz Simone, Davis Erick T, Long Daniel, Wombwell Allison M, Chianis Ella Rose D, Allen-Petersen Brittany L, Steele Nina G, Sears Rosalie C, Matsumoto Ichiro, DelGiorno Kathleen E, Crawford Howard C
Pancreatic ductal adenocarcinoma (PDA) is partly initiated through the transdifferentiation of acinar cells to metaplasia, which progresses to neoplasia and cancer. Tuft cells (TCs) are chemosensory cells not found in the normal pancreas but arise in cancer precursor lesions and diminish during progression to carcinoma. These metaplastic TCs (mTCs) suppress tumor progression through communication with the tumor microenvironment, but their fate during progression is unknown. To determine the fate of mTCs during PDA progression, we created a dual recombinase lineage trace model, wherein a pancreas-specific FlpO was used to induce tumorigenesis, while a tuft-cell specific Pou2f3(CreERT/+) driver was used to induce expression of a tdTomato reporter. We found that mTCs in carcinoma transdifferentiate into neural-like progenitor cells (NRPs), a cell type associated with poor survival in patients. Using conditional knockout and overexpression systems, we found that Myc activity in mTCs is necessary and sufficient to induce this tuft-to-neuroendocrine transition (TNT).

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