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October 5, 2015Nature Communications549 citationsOpen Access

MAP4K family kinases act in parallel to MST1/2 to activate LATS1/2 in the Hippo pathway

ZMZhipeng MengTMToshiro MoroishiVMViolaine Mottier-Pavie

Key Points

  • To identify the upstream kinases responsible for activating LATS1/2 and regulating YAP/TAZ phosphorylation independently of MST1/2 in the Hippo pathway.
  • Assessed YAP/TAZ phosphorylation status following targeted genetic deletions of LATS1/2 or MST1/2.
  • Identified and evaluated MAP4K family kinases (MAP4K1/2/3 and MAP4K4/6/7) using single and combined genetic deletions with MST1/2 under multiple signaling conditions.
  • Targeted deletion of LATS1/2 abolished YAP/TAZ phosphorylation, whereas deletion of MST1/2 alone failed to prevent YAP/TAZ regulation.
  • MAP4K family kinases directly phosphorylated and activated LATS1/2.
  • Combined deletion of both MAP4K family members and MST1/2, but neither deletion alone, fully suppressed LATS1/2 and YAP/TAZ phosphorylation in response to broad upstream stimuli.

Abstract

The Hippo pathway plays a central role in tissue homoeostasis, and its dysregulation contributes to tumorigenesis. Core components of the Hippo pathway include a kinase cascade of MST1/2 and LATS1/2 and the transcription co-activators YAP/TAZ. In response to stimulation, LATS1/2 phosphorylate and inhibit YAP/TAZ, the main effectors of the Hippo pathway. Accumulating evidence suggests that MST1/2 are not required for the regulation of YAP/TAZ. Here we show that deletion of LATS1/2 but not MST1/2 abolishes YAP/TAZ phosphorylation. We have identified MAP4K family members--Drosophila Happyhour homologues MAP4K1/2/3 and Misshapen homologues MAP4K4/6/7-as direct LATS1/2-activating kinases. Combined deletion of MAP4Ks and MST1/2, but neither alone, suppresses phosphorylation of LATS1/2 and YAP/TAZ in response to a wide range of signals. Our results demonstrate that MAP4Ks act in parallel to and are partially redundant with MST1/2 in the regulation of LATS1/2 and YAP/TAZ, and establish MAP4Ks as components of the expanded Hippo pathway.

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Cite This Study

Meng et al. (2015) studied this question.

synapsesocial.com/papers/69d944bc7fca1f84ab684820https://doi.org/10.1038/ncomms9357
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