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Updated: May 27, 2026

Assessing Cellular Target Engagement by SHP2 (PTPN11) Phosphatase Inhibitors
Published on: July 17, 2020
PP2A phosphatase suppresses function of the mesenchymal invasion regulator NEDD9
Peta Bradbury1, Maha Mahmassani, Jessie Zhong
1Children's Cancer Research Unit, Kids Research Institute, The Children's Hospital at Westmead, Westmead, NSW, 2145 Australia.
Abstract:
The mesenchymal mode of cancer cell invasion characterized by active adhesion turnover and a polarized actin cytoskeleton, is critically regulated by the adaptor protein NEDD9/HEF1/Cas-L. While it is known that NEDD9 is subject to extensive phosphorylation modification, the molecules that determine NEDD9 phosphorylation to stimulate adhesion turnover and mesenchymal cell morphologies are currently unknown. Earlier studies have suggested that the serine/threonine phosphatase PP2A regulates interconversion between a low molecular mass NEDD9 phosphoform and higher molecular mass phosphoforms. However, previous studies have used chemical inhibitors to block PP2A activity. In the present study we therefore aimed to specifically inhibit PP2A activity via siRNA and dominant negative approaches to investigate the effect of PP2A on interconversion between 115 kDa and 105 kDa NEDD9 and determine the functional consequence of PP2A activity for NEDD9 function. Strikingly, we find that while the phosphatase inhibitor Calyculin A indeed abrogates detachment-induced dephosphorylation of the 115 kDa NEDD9 phosphoform, PP2A depletion does not inhibit 115 kDa to 105 kDa interconversion. Our data suggest instead that PP2A targets discrete NEDD9 phosphorylation modifications separate to the events that mediate interconversion between the two forms. Functionally, PP2A depletion increases NEDD9 mediated cell spreading and mutation of S369 in the serine-rich region of NEDD9 to aspartate mimics this effect. Importantly, mutation of S369 to alanine abrogates the ability of dominant negative PP2A to increase NEDD9-mediated cell spreading. Collectively, our data reveal that the tumour suppressor PP2A may act via S369 to regulated NEDD9-mediated cell spreading.
Insights
The tumor suppressor PP2A regulates cancer cell invasion by targeting NEDD9 phosphorylation at S369, impacting cell spreading and adhesion turnover. This finding clarifies NEDD9
Area of Science:
- Cell Biology
- Molecular Oncology
- Biochemistry
Background:
- Mesenchymal cancer cell invasion relies on adhesion turnover and actin cytoskeleton regulation by NEDD9.
- NEDD9 phosphorylation is crucial for invasion, but the responsible molecules remain unidentified.
- The serine/threonine phosphatase PP2A was previously implicated in regulating NEDD9 phosphorylation states.
Purpose of the Study:
- To investigate the specific role of PP2A in NEDD9 phosphorylation and its functional consequences.
- To determine how PP2A activity affects the interconversion between 115 kDa and 105 kDa NEDD9 phosphoforms.
- To elucidate the functional impact of PP2A on NEDD9-mediated cell spreading and invasion.
Main Methods:
- Utilized siRNA and dominant-negative approaches to specifically inhibit PP2A activity.
- Analyzed NEDD9 phosphorylation states and interconversion between different molecular mass forms.
- Employed site-directed mutagenesis (S369A, S369D) to assess the role of specific phosphorylation sites.
Main Results:
- PP2A depletion did not inhibit the interconversion between 115 kDa and 105 kDa NEDD9 forms.
- PP2A inhibition or mutation of S369 to aspartate increased NEDD9-mediated cell spreading.
- Mutation of S369 to alanine blocked the effect of dominant-negative PP2A on cell spreading.
Conclusions:
- PP2A targets distinct NEDD9 phosphorylation sites, separate from those mediating 115 kDa to 105 kDa interconversion.
- The tumor suppressor PP2A regulates NEDD9-mediated cell spreading, potentially via phosphorylation at S369.
- Understanding PP2A-NEDD9 interactions offers insights into controlling mesenchymal cancer cell invasion.
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