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Alveolar rhabdomyosarcoma–associated PAX3-FOXO1 promotes tumorigenesis via Hippo pathway suppression
Lisa E.S. Crose, Kathleen A. Galindo, Julie Grondin Kephart, Candy Chen, Julien Fitamant, Nabeel Bardeesy, Rex C. Bentley, Rene L. Galindo, Jen-Tsan Ashley Chi, Corinne M. Linardic
Lisa E.S. Crose, Kathleen A. Galindo, Julie Grondin Kephart, Candy Chen, Julien Fitamant, Nabeel Bardeesy, Rex C. Bentley, Rene L. Galindo, Jen-Tsan Ashley Chi, Corinne M. Linardic
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Research Article Oncology

Alveolar rhabdomyosarcoma–associated PAX3-FOXO1 promotes tumorigenesis via Hippo pathway suppression

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Abstract

Alveolar rhabdomyosarcoma (aRMS) is an aggressive sarcoma of skeletal muscle characterized by expression of the paired box 3-forkhead box protein O1 (PAX3-FOXO1) fusion oncogene. Despite its discovery nearly two decades ago, the mechanisms by which PAX3-FOXO1 drives tumor development are not well characterized. Previously, we reported that PAX3-FOXO1 supports aRMS initiation by enabling bypass of cellular senescence checkpoints. We have now found that this bypass occurs in part through PAX3-FOXO1–mediated upregulation of RASSF4, a Ras-association domain family (RASSF) member. RASSF4 expression was upregulated in PAX3-FOXO1–positive aRMS cell lines and tumors. Enhanced RASSF4 expression promoted cell cycle progression, senescence evasion, and tumorigenesis through inhibition of the Hippo pathway tumor suppressor MST1. We also found that the downstream Hippo pathway target Yes-associated protein 1 (YAP), which is ordinarily restrained by Hippo signaling, was upregulated in RMS tumors. These data suggest that Hippo pathway dysfunction promotes RMS. This work provides evidence for Hippo pathway suppression in aRMS and demonstrates a progrowth role for RASSF4. Additionally, we identify a mechanism used by PAX3-FOXO1 to inhibit MST1 signaling and promote tumorigenesis in aRMS.

Authors

Lisa E.S. Crose, Kathleen A. Galindo, Julie Grondin Kephart, Candy Chen, Julien Fitamant, Nabeel Bardeesy, Rex C. Bentley, Rene L. Galindo, Jen-Tsan Ashley Chi, Corinne M. Linardic

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Figure 3

RASSF4 promotes cell proliferation and senescence inhibition in PAX3-FOXO1 aRMS cells.

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RASSF4 promotes cell proliferation and senescence inhibition in PAX3-FOX...
(A) RASSF4 shRNA validation in HSMMPF+H+M cells. Knockdown was measured by immunoblot analysis for endogenous RASSF4 and actin, which was used as a loading control. pLKO.1 was used as a control vector. (B) Senescence induction in PAX3-FOXO1–expressing HSMM cells. Quantitation of β-gal staining of HSMMV or HSMMPF cells transduced with control vector or RASSF4 shRNAs. *P ≤ 0.01. (C) Loss of RASSF4 in HSMMPF+H+M cells caused deficient cell proliferation, as measured by hemocytometric counts over 5 days of growth in culture and (D) BrdU assay. *P < 0.0001. (E) RASSF4-deficient HSMMPF+H+M cells displayed cell shape change, elevated β-gal staining (insets, mean ± SD; scale bars: 125 μm), cell cycle arrest (F), and p21 upregulation (G). Error bars represent SD in B and D.

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

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