Time-resolved phosphoproteomics reveals scaffolding and catalysis-responsive patterns of SHP2-dependent signaling

Author:

Vemulapalli Vidyasiri12ORCID,Chylek Lily A3ORCID,Erickson Alison4,Pfeiffer Anamarija5,Gabriel Khal-Hentz12,LaRochelle Jonathan12,Subramanian Kartik3ORCID,Cao Ruili1,Stegmaier Kimberley6,Mohseni Morvarid7,LaMarche Matthew J7,Acker Michael G7,Sorger Peter K3ORCID,Gygi Steven P4,Blacklow Stephen C12ORCID

Affiliation:

1. Department of Cancer Biology, Dana-Farber Cancer Institute Boston, Boston, United States

2. Department of Biological Chemistry & Molecular Pharmacology, Blavatnik Institute, Harvard Medical School, Boston, United States

3. Laboratory of Systems Pharmacology, Harvard Medical School, Boston, United States

4. Department of Cell Biology, Harvard Medical School, Boston, United States

5. Novo Nordisk Foundation Center for Protein Research, University of Copenhagen, Copenhagen, Denmark

6. Department of Pediatric Oncology, Dana Farber Cancer Institute, Boston, United States

7. Novartis Institutes for Biomedical Research, Cambridge, United States

Abstract

SHP2 is a protein tyrosine phosphatase that normally potentiates intracellular signaling by growth factors, antigen receptors, and some cytokines, yet is frequently mutated in human cancer. Here, we examine the role of SHP2 in the responses of breast cancer cells to EGF by monitoring phosphoproteome dynamics when SHP2 is allosterically inhibited by SHP099. The dynamics of phosphotyrosine abundance at more than 400 tyrosine residues reveal six distinct response signatures following SHP099 treatment and washout. Remarkably, in addition to newly identified substrate sites on proteins such as occludin, ARHGAP35, and PLCγ2, another class of sites shows reduced phosphotyrosine abundance upon SHP2 inhibition. Sites of decreased phospho-abundance are enriched on proteins with two nearby phosphotyrosine residues, which can be directly protected from dephosphorylation by the paired SH2 domains of SHP2 itself. These findings highlight the distinct roles of the scaffolding and catalytic activities of SHP2 in effecting a transmembrane signaling response.

Funder

Novartis

National Cancer Institute

National Institutes of Health

Novo Nordisk Foundation

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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