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Published on: September 28, 2018
PREX1 Protein Function Is Negatively Regulated Downstream of Receptor Tyrosine Kinase Activation by p21-activated
Douglas Barrows1, John Z He2, Ramon Parsons3
1From the Department of Oncological Sciences, Icahn School of Medicine at Mount Sinai, New York, New York 10029 and the Department of Pharmacology, Columbia University, New York, New York 10032.
Abstract:
Downstream of receptor tyrosine kinase and G protein-coupled receptor (GPCR) stimulation, the phosphatidylinositol 3,4,5-trisphosphate (PIP3)-dependent Rac exchange factor (PREX) family of guanine nucleotide exchange factors (GEFs) activates Rho GTPases, leading to important roles for PREX proteins in numerous cellular processes and diseases, including cancer. PREX1 and PREX2 GEF activity is activated by the second messengers PIP3 and Gβγ, and further regulation of PREX GEF activity occurs by phosphorylation. Stimulation of receptor tyrosine kinases by neuregulin and insulin-like growth factor 1 (IGF1) leads to the phosphorylation of PREX1; however, the kinases that phosphorylate PREX1 downstream of these ligands are not known. We recently reported that the p21-activated kinases (PAKs), which are activated by GTP-bound Ras-related C3 botulinum toxin substrate 1 (Rac1), mediate the phosphorylation of PREX2 after insulin receptor activation. Here we show that certain phosphorylation events on PREX1 after insulin, neuregulin, and IGF1 treatment are PAK-dependent and lead to a reduction in PREX1 binding to PIP3 Like PREX2, PAK-mediated phosphorylation also negatively regulates PREX1 GEF activity. Furthermore, the onset of PREX1 phosphorylation was delayed compared with the phosphorylation of AKT, supporting a model of negative feedback downstream of PREX1 activation. We also found that the phosphorylation of PREX1 after isoproterenol and prostaglandin E2-mediated GPCR activation is partially PAK-dependent and likely also involves protein kinase A, which is known to reduce PREX1 function. Our data point to multiple mechanisms of PREX1 negative regulation by PAKs within receptor tyrosine kinase and GPCR-stimulated signaling pathways that have important roles in diseases such as diabetes and cancer.
Insights
p21-activated kinases (PAKs) negatively regulate PREX1 GEF activity through phosphorylation, impacting signaling pathways in cancer and diabetes. This regulation occurs via receptor tyrosine kinase and GPCR stimulation.
Area of Science:
- Cellular signaling pathways
- Molecular biology
- Cancer research
Background:
- Phosphatidylinositol 3,4,5-trisphosphate (PIP3)-dependent Rac exchange factor (PREX) proteins regulate Rho GTPases.
- PREX GEF activity is modulated by PIP3, Gβγ, and phosphorylation.
- PREX1 phosphorylation downstream of receptor tyrosine kinases (RTKs) was previously uncharacterized.
Purpose of the Study:
- To investigate the kinases responsible for PREX1 phosphorylation after RTK and GPCR stimulation.
- To elucidate the functional consequences of PREX1 phosphorylation by p21-activated kinases (PAKs).
- To understand the role of PAKs in negative feedback regulation of PREX1 signaling.
Main Methods:
- Western blotting to detect protein phosphorylation.
- Co-immunoprecipitation to assess protein binding.
- GEF activity assays.
- Stimulation of cells with growth factors (neuregulin, IGF1, insulin) and GPCR ligands (isoproterenol, prostaglandin E2).
Main Results:
- PAK-dependent phosphorylation of PREX1 was observed after insulin, neuregulin, and IGF1 stimulation, reducing PIP3 binding and GEF activity.
- PREX1 phosphorylation onset was delayed relative to AKT phosphorylation, suggesting negative feedback.
- GPCR-mediated PREX1 phosphorylation involved PAKs and protein kinase A, further inhibiting PREX1 function.
Conclusions:
- PAKs negatively regulate PREX1 GEF activity through phosphorylation in both RTK and GPCR signaling pathways.
- This regulation contributes to negative feedback mechanisms in cellular signaling.
- Dysregulation of PREX1 by PAKs may play a role in diseases like cancer and diabetes.
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