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Updated: Jan 24, 2026

Analysis of Oxidative Stress in Zebrafish Embryos
Published on: July 7, 2014
Studying the ShcD and ERK interaction under acute oxidative stress conditions in melanoma cells
Samrein B M Ahmed1, Sara Amer2, Mira Emad2
1Sharjah Institute for Medical Research, University of Sharjah, United Arab Emirates; College of Medicine, University of Sharjah, United Arab Emirates; Molecular and Cell Biology Department, University of Leicester, UK.
Abstract:
The newly identified melanoma-associated adaptor ShcD was found to translocate to the nucleus upon hydrogen peroxide treatment. Therefore, the aim of this study was to identify the ShcD network in melanoma cells under oxidative stress. LC-MS/MS and GFP-trap were performed to study the ShcD phosphorylation status during acute severe oxidative stress. ShcD was found to be phosphorylated at threonine-159 (Thr159) in response to 5 mM H2O2 treatment. The GPS 2.1 phosphorylation prediction program predicted that the Thr159Pro motif, housed in the N-terminus of the ShcD-CH2 domain, is a potential phosphorylation site for MAPKs (ERK, JNK or p38). Co-immunoprecipitation experiments revealed that ShcD mainly interacts with ERK in B16 and MM138 melanoma cells under both hydrogen peroxide-untreated and -treated conditions. Moreover, ShcD interacts with both phosphorylated and un-phosphorylated ERK, although the interaction between ShcD and phospho-ERK was primarily observed after H2O2 treatment. A MEK inhibitor (U0126) enhanced the interaction between ShcD and unphosphorylated ERK under oxidative stress conditions. Furthermore, Thr159 was mutated to either alanine (A) or glutamic acid (E) to study whether the threonine phosphorylation state influences the ShcD/ERK interaction. Introducing the T159E mutation obliterated the ShcD/ERK interaction. To identify the functional impact of the ShcD/ERK interaction on cell survival signalling under oxidative stress conditions, caspase 3/7 assays and 7AAD cell death assays were used. The ShcD/ERK interaction promoted anti-survival signalling upon exposure to hydrogen peroxide, while U0126 treatment reduced death signalling. Our data also showed that the death signalling initiated by the ShcD/ERK interaction was accompanied by p21 phosphorylation. In summary, these data identified ShcD, via its interaction with ERK, as a proapoptotic protein under oxidative stress conditions.
Insights
Oxidative stress induces melanoma-associated adaptor ShcD to interact with ERK, promoting cell death signaling. This interaction, regulated by ShcD phosphorylation at Thr159, highlights ShcD as a pro-apoptotic factor in melanoma under stress.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Signaling
Background:
- Melanoma-associated adaptor ShcD translocates to the nucleus under oxidative stress.
- Understanding the ShcD network is crucial for identifying therapeutic targets in melanoma.
- Oxidative stress plays a significant role in melanoma progression and treatment resistance.
Purpose of the Study:
- To identify the ShcD protein interaction network in melanoma cells experiencing oxidative stress.
- To investigate the phosphorylation status of ShcD and its functional consequences.
- To elucidate the role of the ShcD-ERK interaction in melanoma cell survival signaling.
Main Methods:
- Liquid chromatography-tandem mass spectrometry (LC-MS/MS) and GFP-trap assays to study ShcD phosphorylation.
- Co-immunoprecipitation experiments to identify ShcD interacting partners, particularly ERK.
- Site-directed mutagenesis (T159A, T159E) and cell-based assays (caspase 3/7, 7AAD) to assess functional impact.
Main Results:
- ShcD is phosphorylated at Threonine-159 (Thr159) in response to hydrogen peroxide (H2O2).
- ShcD primarily interacts with Extracellular signal-regulated Kinase (ERK), both phosphorylated and unphosphorylated forms, under oxidative stress.
- The T159E mutation abolishes the ShcD-ERK interaction, and this interaction promotes pro-apoptotic signaling, while MEK inhibition reduces it.
Conclusions:
- ShcD acts as a pro-apoptotic protein in melanoma cells under oxidative stress conditions.
- The interaction between ShcD and ERK, modulated by ShcD phosphorylation at Thr159, is critical for initiating cell death signaling.
- Targeting the ShcD-ERK interaction may represent a novel therapeutic strategy for melanoma.
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