MAPK14/p38α Shapes the Molecular Landscape of Endometrial Cancer and promotes Tumorigenic Characteristics

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MAPK14/p38α Shapes the Molecular Landscape of Endometrial Cancer and promotes Tumorigenic Characteristics

Authors

Joseph, S.; Zhang, X.; Droby, G.; Wu, D.; Bae-Jump, V.; Lyons, S.; Mordant, A.; Mills, A.; Herring, L.; Rushing, B.; Bowser, J.; Vaziri, C.

Abstract

The molecular underpinnings of High Grade Endometrial Carcinoma (HGEC) metastatic growth and survival are poorly understood. Here we show that ascites-derived and primary tumor HGEC cell lines in 3D spheroid culture faithfully recapitulate key features of malignant peritoneal effusion and exhibit fundamentally distinct transcriptomic, proteomic and metabolomic landscapes when compared with conventional 2D monolayers. Using genetic screening platform we identify MAPK14 (which encodes the protein kinase p38) as a specific requirement for HGEC in spheroid culture. MAPK14/p38 has broad roles in programing the phosphoproteome, transcriptome and metabolome of HGEC spheroids, yet has negligible impact on monolayer cultures. MAPK14 promotes tumorigenicity in vivo and is specifically required to sustain a sub-population of spheroid cells that is enriched in cancer stemness markers. Therefore, spheroid growth of HGEC activates unique biological programs, including p38 signaling, that cannot be captured using 2D culture models and are highly relevant to malignant disease pathology.

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