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Differential YAP Expression in Glioma Cells Induces Cell Competition and Promotes Tumorigenesis

Overview
Journal J Cell Sci
Specialty Cell Biology
Date 2019 Jan 23
PMID 30665893
Citations 34
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Abstract

Intratumor heterogeneity associates with cancer progression and may account for a substantial portion of therapeutic resistance. Although extensive studies have focused on the origin of the heterogeneity, biological interactions between heterogeneous malignant cells within a tumor are largely unexplored. Glioblastoma (GBM) is the most aggressive primary brain tumor. Here, we found that the expression of Yes-associated protein (YAP, also known as YAP1) is intratumorally heterogeneous in GBM. In a xenograft mouse model, differential YAP expression in glioma cells promotes tumorigenesis and leads to clonal dominance by cells expressing more YAP. Such clonal dominance also occurs when cells reach confluence in the two-dimensional culture condition or grow into tumor spheroids. During this process, growth of the dominant cell population is enhanced. In the tumor spheroid, such enhanced growth is accompanied by increased apoptosis in cells expressing less YAP. The cellular interaction during clonal dominance appears to be reminiscent of cell competition. RNA-seq analysis suggests that this interaction induces expression of tumorigenic genes, which may contribute to the enhanced tumor growth. These results suggest that tumorigenesis benefits from competitive interactions between heterogeneous tumor cells.

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References
1.
Vincent J, Fletcher A, Baena-Lopez L . Mechanisms and mechanics of cell competition in epithelia. Nat Rev Mol Cell Biol. 2013; 14(9):581-91. DOI: 10.1038/nrm3639. View

2.
Wang Q, Hu B, Hu X, Kim H, Squatrito M, Scarpace L . Tumor Evolution of Glioma-Intrinsic Gene Expression Subtypes Associates with Immunological Changes in the Microenvironment. Cancer Cell. 2017; 32(1):42-56.e6. PMC: 5599156. DOI: 10.1016/j.ccell.2017.06.003. View

3.
Andor N, Graham T, Jansen M, Xia L, Aktipis C, Petritsch C . Pan-cancer analysis of the extent and consequences of intratumor heterogeneity. Nat Med. 2015; 22(1):105-13. PMC: 4830693. DOI: 10.1038/nm.3984. View

4.
Dong J, Feldmann G, Huang J, Wu S, Zhang N, Comerford S . Elucidation of a universal size-control mechanism in Drosophila and mammals. Cell. 2007; 130(6):1120-33. PMC: 2666353. DOI: 10.1016/j.cell.2007.07.019. View

5.
Zanconato F, Cordenonsi M, Piccolo S . YAP/TAZ at the Roots of Cancer. Cancer Cell. 2016; 29(6):783-803. PMC: 6186419. DOI: 10.1016/j.ccell.2016.05.005. View