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Modulation of lysine acetylation-stimulated repressive activity by Erk2-mediated phosphorylation of RIP140 in
Ping-Chih Ho1, Pawan Gupta, Yao-Chen Tsui
1Department of Pharmacology, University of Minnesota Medical School, Minneapolis, MN 55455-0217, USA.
Abstract:
Receptor-interacting protein 140 is a co-regulator for many transcription factors. Previous mass spectrometry studies showed that either phosphorylation or lysine acetylation of RIP140 directly enhanced its trans-repressive activity. In this study, we first identified p300 as a specific lysine acetyltransferase, and extracellular-signal-related kinase 2 (Erk2) as a specific kinase for threonine phosphorylation, of RIP140 in vivo. We further determined two specific acetylated lysine residues (Lys(158)/Lys(287)) and phosphorylated threonine residues (Thr(202)/Thr(207)) that were critical for its gene-repressive activity. We then delineated signal transduction from Erk2-mediated phosphorylation of RIP140 that enhanced its recruiting p300 for subsequent lysine acetylation, and demonstrated the kinetics of activation of this signal transduction pathway in differentiating adipocytes. Finally, the physiological significance of this cell signal transduction pathway was illustrated in rescuing experiments where the defect in fat accumulation of RIP140-null cultures was rescued by re-expressing the wild type RIP140 or its phospho-mimetic mutant, but not its acetylation deficient mutant. These results demonstrate the signal transduction pathway, initiated from Erk2 activation for specific threonine phosphorylation, followed by p300 recruitment for lysine acetylation, which ultimately enhances the gene-repressive activity of RIP140 and its functional role in fat accumulation in differentiated adipocytes.
Insights
Receptor-interacting protein 140 (RIP140) gene repression is enhanced by a signal pathway. Extracellular-signal-related kinase 2 (Erk2) phosphorylates RIP140, promoting p300 acetylation and boosting its activity in fat cells.
Area of Science:
- Molecular Biology
- Cell Signaling
- Gene Regulation
Background:
- Receptor-interacting protein 140 (RIP140) acts as a co-regulator for transcription factors.
- Post-translational modifications like phosphorylation and acetylation enhance RIP140's gene-repressive activity.
Purpose of the Study:
- To identify specific kinases and acetyltransferases for RIP140.
- To elucidate the signal transduction pathway regulating RIP140 activity.
- To determine the role of this pathway in adipocyte differentiation and fat accumulation.
Main Methods:
- In vivo identification of p300 as a lysine acetyltransferase and Erk2 as a threonine kinase for RIP140.
- Site-directed mutagenesis to identify critical lysine and threonine residues.
- Analysis of signal transduction kinetics in differentiating adipocytes.
- Rescue experiments in RIP140-null cell cultures.
Main Results:
- p300 and Erk2 were identified as specific modifiers of RIP140.
- Lysine residues 158/287 and threonine residues 202/207 were found critical for gene repression.
- Erk2-mediated phosphorylation enhances p300 recruitment and subsequent acetylation of RIP140.
- This pathway is activated during adipocyte differentiation and is crucial for fat accumulation.
Conclusions:
- A novel signal transduction pathway involving Erk2 phosphorylation and p300-mediated acetylation enhances RIP140's gene-repressive function.
- This pathway plays a significant role in regulating fat accumulation in differentiated adipocytes.
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