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Updated: May 18, 2026

Oligopeptide Competition Assay for Phosphorylation Site Determination
Published on: May 18, 2017
Nrf2 is controlled by two distinct β-TrCP recognition motifs in its Neh6 domain, one of which can be modulated by
S Chowdhry1, Y Zhang, M McMahon
1Jacqui Wood Cancer Centre, Division of Cancer Research, Ninewells Hospital and Medical School, University of Dundee, Dundee, Scotland, UK.
Abstract:
Identification of regulatable mechanisms by which transcription factor NF-E2 p45-related factor 2 (Nrf2) is repressed will allow strategies to be designed that counter drug resistance associated with its upregulation in tumours that harbour somatic mutations in Kelch-like ECH-associated protein-1 (Keap1), a gene that encodes a joint adaptor and substrate receptor for the Cul3-Rbx1/Roc1 ubiquitin ligase. We now show that mouse Nrf2 contains two binding sites for β-transducin repeat-containing protein (β-TrCP), which acts as a substrate receptor for the Skp1-Cul1-Rbx1/Roc1 ubiquitin ligase complex. Deletion of either binding site in Nrf2 decreased β-TrCP-mediated ubiquitylation of the transcription factor. The ability of one of the two β-TrCP-binding sites to serve as a degron could be both increased and decreased by manipulation of glycogen synthase kinase-3 (GSK-3) activity. Biotinylated-peptide pull-down assays identified DSGIS(338) and DSAPGS(378) as the two β-TrCP-binding motifs in Nrf2. Significantly, our pull-down assays indicated that β-TrCP binds a phosphorylated version of DSGIS more tightly than its non-phosphorylated counterpart, whereas this was not the case for DSAPGS. These data suggest that DSGIS, but not DSAPGS, contains a functional GSK-3 phosphorylation site. Activation of GSK-3 in Keap1-null mouse embryonic fibroblasts (MEFs), or in human lung A549 cells that contain mutant Keap1, by inhibition of the phosphoinositide 3-kinase (PI3K)-protein kinase B (PKB)/Akt pathway markedly reduced endogenous Nrf2 protein and decreased to 10-50% of normal the levels of mRNA for prototypic Nrf2-regulated enzymes, including the glutamate-cysteine ligase catalytic and modifier subunits, glutathione S-transferases Alpha-1 and Mu-1, haem oxygenase-1 and NAD(P)H:quinone oxidoreductase-1. Pre-treatment of Keap1(-/-) MEFs or A549 cells with the LY294002 PI3K inhibitor or the MK-2206 PKB/Akt inhibitor increased their sensitivity to acrolein, chlorambucil and cisplatin between 1.9-fold and 3.1-fold, and this was substantially attenuated by simultaneous pre-treatment with the GSK-3 inhibitor CT99021.
Insights
Understanding how transcription factor Nrf2 (NF-E2 p45-related factor 2) is repressed is key to overcoming drug resistance. This study reveals Nrf2
Area of Science:
- Molecular Biology
- Cancer Biology
- Biochemistry
Background:
- Transcription factor Nrf2 (NF-E2 p45-related factor 2) upregulation is linked to drug resistance in cancers with Keap1 (Kelch-like ECH-associated protein-1) mutations.
- Keap1 acts as an adaptor for a ubiquitin ligase complex, targeting Nrf2 for degradation.
- Identifying Nrf2 repression mechanisms is crucial for developing therapeutic strategies against cancer drug resistance.
Purpose of the Study:
- To investigate the mechanisms by which Nrf2 is repressed.
- To identify the role of β-transducin repeat-containing protein (β-TrCP) in Nrf2 ubiquitylation and degradation.
- To explore the influence of glycogen synthase kinase-3 (GSK-3) activity on Nrf2 stability and its implications in cancer cells with Keap1 mutations.
Main Methods:
- Deletion mutagenesis of Nrf2 binding sites for β-TrCP.
- Biotinylated-peptide pull-down assays to identify β-TrCP binding motifs.
- Analysis of Nrf2 ubiquitylation and protein levels following manipulation of GSK-3 activity.
- Assessment of Nrf2-regulated gene expression and cellular sensitivity to chemotherapeutic agents.
Main Results:
- Mouse Nrf2 contains two β-TrCP binding sites, DSGIS(338) and DSAPGS(378), crucial for its ubiquitylation and degradation.
- GSK-3 phosphorylation of the DSGIS motif enhances β-TrCP binding and Nrf2 degradation.
- Inhibition of the PI3K-Akt pathway activates GSK-3, reducing Nrf2 protein and its target gene expression in Keap1-mutant cells.
- Inhibition of GSK-3 partially rescues Nrf2 levels and sensitizes cancer cells to chemotherapy.
Conclusions:
- Nrf2 degradation is regulated by GSK-3 phosphorylation of the DSGIS motif, influencing β-TrCP binding.
- Targeting the GSK-3/β-TrCP pathway offers a potential strategy to overcome Nrf2-driven drug resistance in cancers with Keap1 mutations.
- Modulating GSK-3 activity can impact Nrf2 levels and chemosensitivity in cancer cells.
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