The Role of the Pleckstrin Homology Domain-containing Protein CKIP-1 in Activation of p21-activated Kinase 1 (PAK1)*


Journal article


Yong-Bae Kim, Y. Shin, Adhiraj Roy, Jeong‐Ho Kim
Journal of Biological Chemistry, 2015

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APA   Click to copy
Kim, Y.-B., Shin, Y., Roy, A., & Kim, J. H. (2015). The Role of the Pleckstrin Homology Domain-containing Protein CKIP-1 in Activation of p21-activated Kinase 1 (PAK1)*. Journal of Biological Chemistry.


Chicago/Turabian   Click to copy
Kim, Yong-Bae, Y. Shin, Adhiraj Roy, and Jeong‐Ho Kim. “The Role of the Pleckstrin Homology Domain-Containing Protein CKIP-1 in Activation of p21-Activated Kinase 1 (PAK1)*.” Journal of Biological Chemistry (2015).


MLA   Click to copy
Kim, Yong-Bae, et al. “The Role of the Pleckstrin Homology Domain-Containing Protein CKIP-1 in Activation of p21-Activated Kinase 1 (PAK1)*.” Journal of Biological Chemistry, 2015.


BibTeX   Click to copy

@article{yong-bae2015a,
  title = {The Role of the Pleckstrin Homology Domain-containing Protein CKIP-1 in Activation of p21-activated Kinase 1 (PAK1)*},
  year = {2015},
  journal = {Journal of Biological Chemistry},
  author = {Kim, Yong-Bae and Shin, Y. and Roy, Adhiraj and Kim, Jeong‐Ho}
}

Abstract

Background: PAK1 is phosphorylated and activated by the protein kinase CK2 in response to EGF. Results: Upon EGF stimulation, CKIP-1 recruits CK2 to PAK1 in membrane ruffles in a PI3K-dependent manner. Conclusion: PI3K activates PAK1 at the plasma membrane by promoting CK2 phosphorylation of PAK1 via CKIP-1. Significance: This is the first evidence of spatial regulation of PAK1 activity. Upon growth factor stimulation, PAK1 is recruited to the plasma membrane and activated by a mechanism that requires its phosphorylation at Ser-223 by the protein kinase CK2. However, the upstream signaling molecules that regulate this phosphorylation event are not clearly defined. Here, we demonstrate a major role of the CK2α-interacting protein CKIP-1 in activation of PAK1. CK2α, CKIP-1, and PAK1 are translocated to membrane ruffles in response to the epidermal growth factor (EGF), where CKIP-1 mediates the interaction between CK2α and PAK1 in a PI3K-dependent manner. Consistently, PAK1 mediates phosphorylation and modulation of the activity of p41-Arc, one of its plasma membrane substrate, in a fashion that requires PI3K and CKIP-1. Moreover, CKIP-1 knockdown or PI3K inhibition suppresses PAK1-mediated cell migration and invasion, demonstrating the physiological significance of the PI3K-CKIP-1-CK2-PAK1 signaling pathway. Taken together, these findings identify a novel mechanism for the activation of PAK1 at the plasma membrane, which is critical for cell migration and invasion.