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Assaying Protein Kinase Activity with Radiolabeled ATP
Published on: May 26, 2017
Phosphotyrosine-specific phosphatase PTP-SL regulates the ERK5 signaling pathway
Marcus Buschbeck1, Jan Eickhoff, Marc N Sommer
1Max Planck Institute for Biochemistry, Department of Molecular Biology, D-82152 Martinsried, Germany.
Abstract:
The duration and the magnitude of mitogen-activated protein kinase (MAPK) activation specifies signal identity and thus allows the regulation of diverse cellular functions by the same kinase cascade. A tight and finely tuned regulation of MAPK activity is therefore critical for the definition of a specific cellular response. We investigated the role of tyrosine-specific phosphatases (PTPs) in the regulation of ERK5. Although unique in its structure, ERK5 is activated in analogy to other MAPKs by dual phosphorylation of threonine and tyrosine residues in its activation motif. In this study we concentrated on whether and how PTP-SL, a kinase-interacting motif-containing PTP, might be involved in the down-regulation of the ERK5 signal. We found that both proteins interact directly with each other in vitro and in intact cells, resulting in mutual modulation of their enzymatic activities. PTP-SL is a substrate of ERK5 and independent of phosphorylation binding to the kinase enhances its catalytic phosphatase activity. On the other hand, interaction with PTP-SL not only down-regulates endogenous ERK5 activity but also effectively impedes the translocation of ERK5 to the nucleus. These findings indicate a direct regulatory influence of PTP-SL on the ERK5 pathway and corresponding downstream responses of the cell.
Insights
Protein tyrosine phosphatases (PTPs) like PTP-SL directly regulate the ERK5 signaling pathway. PTP-SL modulates ERK5 activity and nuclear translocation, impacting cellular responses.
Area of Science:
- Cellular signaling pathways
- Molecular and cellular biology
- Signal transduction
Background:
- Mitogen-activated protein kinase (MAPK) activation duration and magnitude dictate signal identity, regulating diverse cellular functions.
- Precise regulation of MAPK activity is crucial for specific cellular responses.
- ERK5, a unique MAPK, is activated by dual phosphorylation.
Purpose of the Study:
- To investigate the role of tyrosine-specific phosphatases (PTPs) in regulating ERK5.
- To determine if PTP-SL, a PTP with a kinase-interacting motif, is involved in down-regulating ERK5 signaling.
Main Methods:
- In vitro and in vivo interaction studies between PTP-SL and ERK5.
- Enzymatic activity assays for both PTP-SL and ERK5.
- Analysis of ERK5 translocation to the nucleus.
Main Results:
- PTP-SL and ERK5 directly interact in vitro and in cells, mutually modulating their activities.
- PTP-SL is a substrate of ERK5; binding enhances PTP-SL's phosphatase activity.
- PTP-SL interaction down-regulates ERK5 activity and inhibits its nuclear translocation.
Conclusions:
- PTP-SL directly regulates the ERK5 pathway.
- PTP-SL influences downstream cellular responses mediated by ERK5.
- This interaction provides a mechanism for fine-tuning MAPK signaling and cellular outcomes.
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