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Recombinant α- β- and γ-Synucleins Stimulate Protein Phosphatase 2A Catalytic Subunit Activity in Cell Free Assays
Published on: August 13, 2017
Protein phosphatase 2A interacts with and directly dephosphorylates RelA
J Yang1, G H Fan, B E Wadzinski
1Department of Cancer Biology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-2175, USA.
Abstract:
Nuclear factor-kappa B (NF-kappa B)/Rel transcription factors are key regulators of a variety of genes involved in inflammatory responses, growth, differentiation, apoptosis, and development. There are increasing lines of evidence that NF-kappa B/Rel activity is controlled to a great extent by its phosphorylation state. In this study, we demonstrated that RelA physically associated with protein phosphatase 2A (PP2A) subunit A (PR65). Both the N- and C-terminal regions of RelA were responsible for the PP2A binding. RelA co-immunoprecipitated with PP2A in melanocytes in the absence of stimulation, indicating that RelA forms a signaling complex with PP2A in the cells. RelA was dephosphorylated by a purified PP2A core enzyme, a heterodimer formed by the catalytic subunit of PP2A (PP2Ac) and PR65, in a concentration-dependent manner. Okadaic acid, an inhibitor of PP2A at lower concentration, increased the basal phosphorylation of RelA in melanocytes and blocked the dephosphorylation of RelA after interleukin-1 stimulation. Interestingly, PP2A immunoprecipitated from melanocytes was able to dephosphorylate RelA, whereas PP2A immunoprecipitated from melanoma cell lines exhibited decreased capacity to dephosphorylate RelA in vitro. Moreover, in melanoma cells in which I kappa B kinase activity was inhibited by sulindac to a similar level as in melanocytes, the phosphorylation state of RelA and the relative NF-kappa B activity were still higher than those in normal melanocytes. These data suggest that the constitutive activation of RelA in melanoma cells (Yang, J., and Richmond, A. (2001) Cancer Res. 61, 4901-4909) could be due, at least in part, to the deficiency of PP2A, which exhibits decreased dephosphorylation of NF-kappa B/RelA.
Insights
Nuclear factor-kappa B (NF-kappa B) activity is regulated by phosphorylation. This study shows protein phosphatase 2A (PP2A) dephosphorylates RelA, and its deficiency in melanoma cells may cause constitutive NF-kappa B activation.
Area of Science:
- Molecular Biology
- Cell Signaling
- Cancer Research
Background:
- Nuclear factor-kappa B (NF-kappa B) transcription factors regulate critical cellular processes including inflammation, growth, and apoptosis.
- NF-kappa B/Rel activity is significantly influenced by its phosphorylation state.
Purpose of the Study:
- To investigate the interaction between RelA, a component of NF-kappa B, and protein phosphatase 2A (PP2A).
- To determine the role of PP2A in regulating RelA phosphorylation and NF-kappa B activity, particularly in the context of melanoma.
Main Methods:
- Co-immunoprecipitation assays to demonstrate the physical association between RelA and PP2A.
- In vitro dephosphorylation assays using purified PP2A core enzyme.
- Treatment with okadaic acid (PP2A inhibitor) to assess its effect on RelA phosphorylation.
- Comparison of PP2A activity in melanocytes versus melanoma cell lines.
Main Results:
- RelA physically associates with the PP2A subunit PR65, forming a signaling complex in melanocytes.
- Purified PP2A core enzyme dephosphorylated RelA in a concentration-dependent manner.
- PP2A from melanoma cells showed reduced capacity to dephosphorylate RelA compared to melanocytes.
- Melanoma cells exhibited higher RelA phosphorylation and NF-kappa B activity even when I kappa B kinase activity was inhibited.
Conclusions:
- PP2A directly dephosphorylates RelA, modulating NF-kappa B activity.
- A deficiency in PP2A-mediated dephosphorylation of RelA may contribute to the constitutive activation of NF-kappa B observed in melanoma cells.
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