Par-1 Regulates Tissue Growth by Influencing Hippo Phosphorylation Status and Hippo-Salvador Association: e1001620

The evolutionarily conserved Hippo (Hpo) signaling pathway plays a pivotal role in organ size control by balancing cell proliferation and cell death. Here, we reported the identification of Par-1 as a regulator of the Hpo signaling pathway using a gain-of-function EP screen in Drosophila melanogaste...

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Veröffentlicht in:PLoS biology 2013-08, Vol.11 (8)
Hauptverfasser: Huang, Hong-Ling, Wang, Shimin, Yin, Meng-Xin, Dong, Liang, Wang, Chao, Wu, Wei, Lu, Yi, Feng, Miao, Dai, Chuanyang, Guo, Xiaocan, Li, Li, Zhao, Bin, Zhou, Zhaocai, Ji, Hongbin, Jiang, Jin, Zhao, Yun, Liu, Xin-Yuan, Zhang, Lei
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Sprache:eng
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Zusammenfassung:The evolutionarily conserved Hippo (Hpo) signaling pathway plays a pivotal role in organ size control by balancing cell proliferation and cell death. Here, we reported the identification of Par-1 as a regulator of the Hpo signaling pathway using a gain-of-function EP screen in Drosophila melanogaster. Overexpression of Par-1 elevated Yorkie activity, resulting in increased Hpo target gene expression and tissue overgrowth, while loss of Par-1 diminished Hpo target gene expression and reduced organ size. We demonstrated that par-1 functioned downstream of fat and expanded and upstream of hpo and salvador (sav). In addition, we also found that Par-1 physically interacted with Hpo and Sav and regulated the phosphorylation of Hpo at Ser30 to restrict its activity. Par-1 also inhibited the association of Hpo and Sav, resulting in Sav dephosphorylation and destabilization. Furthermore, we provided evidence that Par-1-induced Hpo regulation is conserved in mammalian cells. Taken together, our findings identified Par-1 as a novel component of the Hpo signaling network.
ISSN:1544-9173
1545-7885
DOI:10.1371/journal.pbio.1001620