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c-Jun NH2-terminal kinases target the ubiquitination of their associated transcription factors
1Ruttenberg Cancer Center, Mount Sinai School of Medicine, New York, New York 10029, USA.
Abstract:
Regulatory proteins are often ubiquitinated, depending on their phosphorylation status as well as on their association with ancillary proteins that serve as adapters of the ubiquitination machinery. We previously demonstrated that c-Jun is targeted for ubiquitination by its association with inactive c-Jun NH2-terminal kinase (JNK). Phosphorylation by activated JNK protects c-Jun from ubiquitination, thus by prolonging its half-life. In the study reported here, we determined the ability of JNK to target ubiquitination of its other substrates (Elk1 and activating transcription factor 2 (ATF2)) and associated proteins (ATF2 and JunB). We demonstrate that phosphorylation by JNK protects ATF2, but not Elk1, from JNK-targeted ubiquitination. We also show that association of inactive JNK with JunB or ATF2 is necessary to target them for ubiquitination. Unlike its targeting of c-Jun, JNK requires additional cellular components, yet to be identified, to target the ubiquitination of ATF2. Elk1 is phosphorylated by JNK, but JNK neither associates with nor targets Elk1 for ubiquitination. The implications for the dual role of JNK in the regulation of ubiquitination and stability of c-Jun, ATF2, and JunB in normally growing versus stressed cells are discussed.
Insights
JNK phosphorylation protects ATF2 from ubiquitination, but not Elk1. Inactive JNK targets JunB and ATF2 for ubiquitination, with ATF2 requiring additional factors for this process.
Area of Science:
- Cellular Biology
- Molecular Biology
- Protein Biochemistry
Background:
- Regulatory proteins undergo ubiquitination, influenced by phosphorylation and adapter proteins.
- c-Jun is ubiquitinated via inactive c-Jun NH2-terminal kinase (JNK); JNK phosphorylation stabilizes c-Jun.
Purpose of the Study:
- Investigate JNK's role in ubiquitination of substrates Elk1 and activating transcription factor 2 (ATF2).
- Examine JNK's association with ATF2 and JunB in targeting them for ubiquitination.
Main Methods:
- Studied JNK-mediated ubiquitination of Elk1, ATF2, and JunB.
- Assessed the impact of JNK phosphorylation on substrate ubiquitination and stability.
- Investigated the necessity of inactive JNK association for substrate ubiquitination.
Main Results:
- JNK phosphorylation protects ATF2 from ubiquitination, but not Elk1.
- Inactive JNK association is required to target JunB and ATF2 for ubiquitination.
- ATF2 ubiquitination by JNK requires additional cellular factors beyond JNK itself.
Conclusions:
- JNK has a dual role in regulating ubiquitination and stability of c-Jun, ATF2, and JunB.
- Differential regulation of substrates by JNK impacts cellular responses in normal and stressed conditions.