Mechanical cue-induced YAP instructs Skp2-dependent cell cycle exit and oncogenic signaling

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Mechanical tensions are usually generated during development at spatially defined regions within tissues. Such physical cues dictate the cellular decisions of proliferation or cell cycle arrest. Yet, the mechanisms by which mechanical stress controls the cell cycle are not yet fully understood. Here, we report that mechanical cues function upstream of Skp2 transcription in human breast cancer cells. We found that YAP, the mechano-responsive oncogenic Hippo signaling effector, directly promotes Skp2 transcription. YAP inactivation induces cell cycle exit (G0) by down-regulating Skp2, causing p21/p27 to accumulate. Both Skp2 reconstitution and p21/p27 depletion can rescue the observed defect in cell cycle progression. In the context of a tissue-mimicking 3D culture system, Skp2 inactivation effectively suppresses YAP-driven oncogenesis and aberrant stiff 3D matrix-evoked epithelial tissue behaviors. Finally, we also found that the expression of Skp2 and YAP is positively correlated in breast cancer patients. Our results not only reveal the molecular mechanism by which mechanical cues induce Skp2 transcription, but also uncover a role for YAP-Skp2 oncogenic signaling in the relationship between tissue rigidity and cancer progression.
Publisher
WILEY
Issue Date
2017-09
Language
English
Article Type
Article
Keywords

HUMAN BREAST-CANCER; HUMAN PROSTATE-CANCER; LIGASE SUBUNIT SKP2; HIPPO PATHWAY; MALIGNANT PHENOTYPE; GENE-EXPRESSION; GROWTH-CONTROL; MESSENGER-RNA; SIZE-CONTROL; S-PHASE

Citation

EMBO JOURNAL, v.36, no.17, pp.2510 - 2528

ISSN
0261-4189
DOI
10.15252/embj.201696089
URI
http://hdl.handle.net/10203/226123
Appears in Collection
BS-Journal Papers(저널논문)
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