Gene interactions and pathways from curated databases and text-mining
Mol Biol Cell 2003, PMID: 12960424

Integration of cell attachment, cytoskeletal localization, and signaling by integrin-linked kinase (ILK), CH-ILKBP, and the tumor suppressor PTEN.

Attwell, Sarah; Mills, Julia; Troussard, Armelle; Wu, Chuanyue; Dedhar, Shoukat

Cell attachment and the assembly of cytoskeletal and signaling complexes downstream of integrins are intimately linked and coordinated. Although many intracellular proteins have been implicated in these processes, a new paradigm is emerging from biochemical and genetic studies that implicates integrin-linked kinase (ILK) and its interacting proteins, such as CH-ILKBP (alpha-parvin), paxillin, and PINCH in coupling integrins to the actin cytoskeleton and signaling complexes. Genetic studies in Drosophila, Caenorhabditis elegans, and mice point to an essential role of ILK as an adaptor protein in mediating integrin-dependent cell attachment and cytoskeletal organization. Here we demonstrate, using several different approaches, that inhibiting ILK kinase activity, or expression, results in the inhibition of cell attachment, cell migration, F-actin organization, and the specific cytoskeletal localization of CH-ILKBP and paxillin in human cells. We also demonstrate that the kinase activity of ILK is elevated in the cytoskeletal fraction and that the interaction of CH-ILKBP with ILK within the cytoskeleton stimulates ILK activity and downstream signaling to PKB/Akt and GSK-3. Interestingly, the interaction of CH-ILKBP with ILK is regulated by the Pi3 kinase pathway, because inhibition of Pi3 kinase activity by pharmacological inhibitors, or by the tumor suppressor PTEN, inhibits this interaction as well as cell attachment and signaling. These data demonstrate that the kinase and adaptor properties of ILK function together, in a Pi3 kinase-dependent manner, to regulate integrin-mediated cell attachment and signal transduction.

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Text Mining Data

ILK → CH-ILKBP: " We also demonstrate that the kinase activity of ILK is elevated in the cytoskeletal fraction and that the interaction of CH-ILKBP with ILK within the cytoskeleton stimulates ILK activity and downstream signaling to PKB/Akt and GSK-3 "

Manually curated Databases

  • OpenBEL Selventa BEL large corpus: Complex of ILK-LIMS1-PARVA-PXN (increases, ILK/LIMS1/PARVA/PXN Activity)
    Evidence: Interestingly, the interaction of CH-ILKBP with ILK is regulated by the Pi3 kinase pathway, because inhibition of Pi3 kinase activity by pharmacological inhibitors, or by the tumor suppressor PTEN, inhibits this interaction as well as cell attachment and signaling.
  • OpenBEL Selventa BEL large corpus: GSK3B → Complex of ILK-LIMS1-PARVA-PXN (increases)
    Evidence: # Ariadne: Furthermore, CH-ILKBP stimulated GSK-3 beta phosphorylation on Ser 9, and phosphorylation of PKB/Akt on Ser 473, both of which have been shown previously to be regulated by ILK (Delcommenne et al., 1998 ). [Regulation]
  • OpenBEL Selventa BEL large corpus: GSK3B → ILK (increases, GSK3B Activity)
    Evidence: # Ariadne: Furthermore, CH-ILKBP stimulated GSK-3 beta phosphorylation on Ser 9, and phosphorylation of PKB/Akt on Ser 473, both of which have been shown previously to be regulated by ILK (Delcommenne et al., 1998 ). [Regulation]
  • OpenBEL Selventa BEL large corpus: ILK → PARVA (increases, PARVA Activity)
    Evidence: We also demonstrate that the kinase activity of ILK is elevated in the cytoskeletal fraction and that the interaction of CH-ILKBP with ILK within the cytoskeleton stimulates ILK activity and downstream signaling to PKB/Akt and GSK-3.