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Published on: May 26, 2017
Extracellular signal-regulated kinase 2 (ERK2) phosphorylation sites and docking domain on the nuclear pore complex
Tomás Vomastek1, Marcin P Iwanicki, W Richard Burack
1National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi 110 067, India.
Abstract:
Identifying direct substrates of mitogen-activated protein kinases (MAPKs) and understanding how those substrates are selected is central to understanding how these ubiquitously activated enzymes generate diverse biological responses. In previous work, we identified several new candidate substrates for the MAPK ERK2 (extracellular signal-regulated kinase 2), including the nuclear pore complex protein Tpr (translocated promoter region). In this report, we identify sites on Tpr for ERK2 phosphorylation and binding and demonstrate their functional interaction. ERK2 phosphorylation and dimerization are necessary for ERK2-Tpr binding, and this occurs through a DEF (docking site for ERK2, FXF) domain on Tpr. Surprisingly, the DEF domain and the phosphorylation sites displayed positive cooperativity to promote ERK2 binding to Tpr, in contrast to substrates where phosphorylation reduces binding. Ectopic expression or depletion of Tpr resulted in decreased movement of activated ERK2 from the cytoplasm to the nucleus, implying a role for Tpr in ERK2 translocation. Collectively, the data provide direct evidence that a component of the nuclear pore complex is a bona fide substrate of ERK2 in vivo and that activated ERK2 stably associates with this substrate after phosphorylation, where it could play a continuing role in nuclear pore function. We propose that Tpr is both a substrate and a scaffold for activated ERKs.
Insights
Mitogen-activated protein kinases (MAPKs) like ERK2 bind the nuclear pore protein Tpr. This interaction, regulated by phosphorylation, influences ERK2
Area of Science:
- Cellular signaling pathways
- Molecular biology
- Protein-protein interactions
Background:
- Mitogen-activated protein kinases (MAPKs) mediate diverse cellular responses.
- Understanding MAPK substrates is crucial for deciphering their functions.
- The nuclear pore complex protein Tpr is a candidate substrate for ERK2.
Purpose of the Study:
- To identify and characterize the interaction between ERK2 and Tpr.
- To elucidate the role of Tpr in ERK2 signaling and localization.
Main Methods:
- Phosphorylation site mapping
- Co-immunoprecipitation assays
- In vivo knockdown and overexpression studies
- Substrate binding assays
Main Results:
- Specific phosphorylation sites on Tpr for ERK2 were identified.
- ERK2 phosphorylation and dimerization are required for Tpr binding via a DEF domain.
- Tpr acts as a scaffold, with positive cooperativity between phosphorylation and the DEF domain enhancing ERK2 binding.
- Tpr influences the nuclear translocation of activated ERK2.
Conclusions:
- Tpr is a direct substrate of ERK2 in vivo.
- Tpr plays a role in regulating ERK2 localization and potentially nuclear pore function.
- Tpr serves as both a substrate and a scaffold for activated ERK2.
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