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YAP1 and WWTR1 expression inversely correlates with neuroendocrine markers in Merkel cell carcinoma
Thomas C. Frost, Ashley K. Gartin, Mofei Liu, Jingwei Cheng, Harita Dharaneeswaran, Derin B. Keskin, Catherine J. Wu, Anita Giobbie-Hurder, Manisha Thakuria, James A. DeCaprio
Thomas C. Frost, Ashley K. Gartin, Mofei Liu, Jingwei Cheng, Harita Dharaneeswaran, Derin B. Keskin, Catherine J. Wu, Anita Giobbie-Hurder, Manisha Thakuria, James A. DeCaprio
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Clinical Research and Public Health Dermatology

YAP1 and WWTR1 expression inversely correlates with neuroendocrine markers in Merkel cell carcinoma

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Abstract

Background Merkel cell carcinoma (MCC) is an aggressive neuroendocrine (NE) skin cancer caused by severe UV-induced mutations or expression of Merkel cell polyomavirus (MCPyV) large and small T antigens (LT and ST). Despite deep genetic differences between MCPyV-positive and -negative subtypes, current clinical diagnostic markers are indistinguishable, and the expression profile of MCC tumors is, to our knowledge, unexplored.Methods Here, we leveraged bulk and single-cell RNA-Seq of patient-derived tumor biopsies and cell lines to explore the underlying transcriptional environment of MCC.Results Strikingly, MCC samples could be separated into transcriptional subtypes that were independent of MCPyV status. Instead, we observed an inverse correlation between a NE gene signature and the Hippo pathway transcription factors Yes1-associated transcriptional regulator (YAP1) and WW domain–containing transcriptional regulator 1 (WWTR1). This inverse correlation was broadly present at the transcript and protein levels in the tumor biopsies as well as in established and patient-derived cell lines. Mechanistically, expression of YAP1 or WWTR1 in a MCPyV-positive MCC cell line induced cell-cycle arrest at least in part through TEA domain–dependent (TEAD-dependent) transcriptional repression of MCPyV LT.Conclusion These findings identify what we believe to be a previously unrecognized heterogeneity in NE gene expression within MCC and support a model of YAP1/WWTR1 silencing as essential for the development of MCPyV-positive MCC.Funding US Public Health Service grants R35CA232128, P01CA203655, and P30CA06516.

Authors

Thomas C. Frost, Ashley K. Gartin, Mofei Liu, Jingwei Cheng, Harita Dharaneeswaran, Derin B. Keskin, Catherine J. Wu, Anita Giobbie-Hurder, Manisha Thakuria, James A. DeCaprio

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Figure 3

NE marker and YAP1 and WWTR1 expression is strongly negatively correlated in MCC tumor samples.

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NE marker and YAP1 and WWTR1 expression is strongly negatively correlate...
(A) Genome-wide gene-to-gene Pearson correlations for 44 bulk RNA-sequenced tumor samples (44) showing that YAP1 and WWTR1 are negatively correlated with ATOH1 and SOX2 across all samples. (B) Heatmap of normalized expression of YAP1, WWTR1, CCN1, CCN2, and cluster 0 genes in each WWTR1-expressing cell (n = 301) from the 9 tumor samples analyzed by scRNA-Seq. (C) Heatmaps of the 44 bulk RNA-sequenced tumor samples (left) (44), bulk RNA-sequenced PDCLs with individual replicates shown (center) (44), and bulk RNA-sequenced, DMSO-treated established MCC cell lines (right) (11) showing negatively correlated expression between YAP1 and WWTR1 and their target genes (“Wang targets”) (47), cluster 0 genes, and other NE genes. (D) Immunoblot of PDCLs showing negatively correlated expression between WWTR1 and NE markers. n = 1.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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