AI Article Synopsis

  • Cell adhesion to the extracellular matrix and neighboring cells is essential for cell growth and tissue balance, with the Hippo signaling pathway playing a pivotal role in this process, particularly through the regulation of YAP1 and TAZ.
  • Research shows that β1 integrins are crucial in promoting cell proliferation in mesenchymal cells by facilitating YAP1's movement to the nucleus via the reduction of its phosphorylated state, which is controlled by LATS1/2.
  • The study identifies the small GTPase RAC1 and PAK as key factors in YAP1 regulation influenced by β1 integrin adhesion, and reveals that the regulatory protein merlin negatively affects YAP1’s interaction with LATS1/2 and its phosphorylation status when phosphory

Article Abstract

Cell adhesion to the extracellular matrix or to surrounding cells plays a key role in cell proliferation and differentiation and is critical for proper tissue homeostasis. An important pathway in adhesion-dependent cell proliferation is the Hippo signaling cascade, which is coregulated by the transcription factors Yes-associated protein 1 (YAP1) and transcriptional coactivator with PDZ-binding motif (TAZ). However, how cells integrate extracellular information at the molecular level to regulate YAP1's nuclear localization is still puzzling. Herein, we investigated the role of β1 integrins in regulating this process. We found that β1 integrin-dependent cell adhesion is critical for supporting cell proliferation in mesenchymal cells both and β1 integrin-dependent cell adhesion relied on the relocation of YAP1 to the nucleus after the down-regulation of its phosphorylated state mediated by large tumor suppressor gene 1 and 2 (LATS1/2). We also found that this phenotype relies on β1 integrin-dependent local activation of the small GTPase RAC1 at the plasma membrane to control the activity of P21 (RAC1)-activated kinase (PAK) of group 1. We further report that the regulatory protein merlin (neurofibromin 2, NF2) interacts with both YAP1 and LATS1/2 via its C-terminal moiety and FERM domain, respectively. PAK1-mediated merlin phosphorylation on Ser-518 reduced merlin's interactions with both LATS1/2 and YAP1, resulting in YAP1 dephosphorylation and nuclear shuttling. Our results highlight RAC/PAK1 as major players in YAP1 regulation triggered by cell adhesion.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5702661PMC
http://dx.doi.org/10.1074/jbc.M117.808063DOI Listing

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