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Author Spotlight: Developing Tools to Tune the Activity of Tyrosine Phosphatases
Published on: September 6, 2024
The EGFR phosphatase RPTPγ is a redox-regulated suppressor of promigratory signaling
Maitreyi S Joshi1, Angel Stanoev1, Jan Huebinger1
1Department of Systemic Cell Biology, Max Planck Institute for Molecular Physiology, Dortmund, Germany.
Abstract:
Spatially organized reaction dynamics between proto-oncogenic epidermal growth factor receptor (EGFR) and protein tyrosine phosphatases determine EGFR phosphorylation dynamics in response to growth factors and thereby cellular behavior within developing tissues. We show that the reaction dynamics of mutual inhibition between RPTPγ phosphatase and autocatalytic ligandless EGFR phosphorylation enable highly sensitive promigratory EGFR signaling responses to subnanomolar EGF levels, when < 5% receptors are occupied by EGF. EGF thereby triggers an autocatalytic phospho-EGFR reaction by the initial production of small amounts of phospho-EGFR through transient, asymmetric EGF-EGFR2 dimers. Single cell RPTPγ oxidation imaging revealed that phospho-EGFR induces activation of NADPH oxidase, which in turn inhibits RPTPγ-mediated dephosphorylation of EGFR, tilting the autocatalytic RPTPγ/EGFR toggle switch reaction towards ligandless phosphorylated EGFR. Reversibility of this reaction to EGF is maintained by the constitutive phosphatase activity of endoplasmic reticulum-associated TCPTP. This RPTPγ/EGFR reaction at the plasma membrane causes promigratory signaling that is separated from proliferative signaling induced by accumulated, liganded, phosphorylated EGF-EGFR in endosomes. Accordingly, loss of RPTPγ results in constitutive promigratory signaling from phosphorylated EGFR monomers. RPTPγ is thus a suppressor of promigratory oncogenic but not of proliferative EGFR signaling.
Insights
Epidermal growth factor receptor (EGFR) signaling is regulated by a toggle switch involving RPTPγ phosphatase and autocatalytic EGFR phosphorylation, controlling cell migration. RPTPγ suppresses promigratory signaling, but not proliferative signaling.
Area of Science:
- Cellular dynamics
- Signal transduction
- Molecular biology
Background:
- Proto-oncogenic epidermal growth factor receptor (EGFR) phosphorylation dynamics are crucial for cellular behavior.
- Spatial organization of EGFR and protein tyrosine phosphatases dictates signaling responses.
Purpose of the Study:
- To elucidate the reaction dynamics between EGFR and RPTPγ phosphatase.
- To understand the mechanism of sensitive promigratory EGFR signaling.
- To determine the role of RPTPγ in regulating EGFR signaling and cell behavior.
Main Methods:
- Single-cell RPTPγ oxidation imaging.
- Analysis of reaction dynamics and toggle switch mechanisms.
- Investigating EGFR phosphorylation and dephosphorylation.
Main Results:
- Mutual inhibition between RPTPγ and autocatalytic EGFR phosphorylation enables sensitive promigratory signaling.
- Phospho-EGFR activates NADPH oxidase, inhibiting RPTPγ and promoting ligandless EGFR phosphorylation.
- TCPTP maintains reaction reversibility; RPTPγ separates promigratory from proliferative signaling.
Conclusions:
- RPTPγ acts as a suppressor of promigratory oncogenic EGFR signaling.
- Loss of RPTPγ leads to constitutive promigratory signaling.
- EGFR signaling compartmentalization is key to distinct cellular responses.
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