Hippo pathway signaling and YAP/TAZ Peer reviewed

Upstream Regulation of the Hippo Pathway

Sherzod A. Tokamov, Richard G. Fehon

Cold Spring Harbor Perspectives in Biology | Sep 4, 2026

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These regulatory mechanisms are discussed, with particular attention to those that function upstream of the core kinases, their organization within epithelial cells, and how this organization allows cells to sense mechanical tension to shape growth in developing tissues.

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Studies of the Hippo signaling pathway have revealed a highly complex network of interacting regulatory mechanisms that together control pathway output and tissue growth. An overriding theme of this regulation is that it functions to link basic cellular architecture and processes to pathway function, thereby allowing tissue growth to be coordinated with cell shape and tissue morphogenesis. One such mechanism involves the transmembrane protein Crumbs and its partner Expanded, which recruit and activate the core kinases, Tao-1, Hippo, and Warts, to the junctional cortex. In parallel, Kibra and its partner Merlin recruit and activate pathway components at the apicomedial cell cortex. Both mechanisms physically and functionally interact with apical and basolateral polarity components, leading to significant cross talk between these pathways. Importantly, mechanical tension, generated within cells by actomyosin contractile networks and transmitted between cells through intercellular junctions, controls pathway output via multiple mechanisms in distinct cellular domains. In this review, we discuss these regulatory mechanisms, with particular attention to those that function upstream of the core kinases, their organization within epithelial cells, and how this organization allows cells to sense mechanical tension to shape growth in developing tissues.

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Sherzod A. Tokamov

first | University of Chicago | ORCID 0000-0001-7989-1552

Richard G. Fehon

last | University of Chicago | ORCID 0000-0003-4889-2602

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BibTeX

@article{Tokamov2026Upstream,
  title = {Upstream Regulation of the Hippo Pathway},
  author = {Sherzod A. Tokamov and Richard G. Fehon},
  journal = {Cold Spring Harbor Perspectives in Biology},
  year = {2026},
  doi = {10.1101/cshperspect.a041897},
  url = {https://doi.org/10.1101/cshperspect.a041897}
}

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