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Updated: Apr 21, 2026

Identification of Kinase-substrate Pairs Using High Throughput Screening
Published on: August 29, 2015
Axl phosphorylates Elmo scaffold proteins to promote Rac activation and cell invasion
Afnan Abu-Thuraia1, Rosemarie Gauthier2, Rony Chidiac3
1Institut de Recherches Cliniques de Montréal (IRCM), Montréal, QC, Canada Département de Médecine (Programmes de Biologie Moléculaire), Université de Montréal, Montreal, QC, Canada.
Abstract:
The receptor tyrosine kinase Axl contributes to cell migration and invasion. Expression of Axl correlates with metastatic progression in cancer patients, yet the specific signaling events promoting invasion downstream of Axl are poorly defined. Herein, we report Elmo scaffolds to be direct substrates and binding partners of Axl. Elmo proteins are established to interact with Dock family guanine nucleotide exchange factors to control Rac-mediated cytoskeletal dynamics. Proteomics and mutagenesis studies reveal that Axl phosphorylates Elmo1/2 on a conserved carboxyl-terminal tyrosine residue. Upon Gas6-dependent activation of Axl, endogenous Elmo2 becomes phosphorylated on Tyr-713 and enters into a physical complex with Axl in breast cancer cells. Interfering with Elmo2 expression prevented Gas6-induced Rac1 activation in breast cancer cells. Similarly to blocking of Axl, Elmo2 knockdown or pharmacological inhibition of Dock1 abolishes breast cancer cell invasion. Interestingly, Axl or Elmo2 knockdown diminishes breast cancer cell proliferation. Rescue of Elmo2 knockdown cells with the wild-type protein but not with Elmo2 harboring Tyr-713-Phe mutations restores cell invasion and cell proliferation. These results define a new mechanism by which Axl promotes cell proliferation and invasion and identifies inhibition of the Elmo-Dock pathway as a potential therapeutic target to stop Axl-induced metastases.
Insights
Axl receptor tyrosine kinase promotes cancer cell invasion and proliferation by phosphorylating Elmo scaffolds. Inhibiting the Elmo-Dock pathway offers a potential therapeutic strategy against Axl-driven metastases.
Area of Science:
- Oncology
- Cell Biology
- Molecular Signaling
Background:
- The receptor tyrosine kinase Axl is implicated in cancer metastasis.
- Downstream signaling pathways of Axl that drive invasion are not fully understood.
Purpose of the Study:
- To elucidate the downstream signaling mechanisms of Axl in promoting cancer cell invasion.
- To identify novel therapeutic targets for Axl-driven metastatic progression.
Main Methods:
- Proteomics and mutagenesis to identify Axl substrates.
- Co-immunoprecipitation to study protein interactions.
- Cellular assays including knockdown, rescue, and pharmacological inhibition to assess invasion and proliferation.
Main Results:
- Elmo scaffolds (Elmo1/2) are identified as direct substrates and binding partners of Axl.
- Axl phosphorylates Elmo1/2 on a conserved tyrosine residue (Tyr-713 in Elmo2).
- Axl-mediated phosphorylation of Elmo2 is crucial for Gas6-induced Rac1 activation, cell invasion, and proliferation.
Conclusions:
- Axl promotes cancer cell proliferation and invasion through the Elmo-Dock signaling axis.
- Targeting the Elmo-Dock pathway represents a potential therapeutic strategy to inhibit Axl-induced metastasis.
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