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Updated: Jun 5, 2026

In Vitro SUMOylation Assay to Study SUMO E3 Ligase Activity
Published on: January 29, 2018
Transcriptional control of metabolic and inflammatory pathways by nuclear receptor SUMOylation
Eckardt Treuter1, Nicolas Venteclef
1Karolinska Institutet, Center for Biosciences, Department of Biosciences and Nutrition, S-14183 Stockholm, Sweden. eckardt.treuter@ki.se
Abstract:
Nuclear receptors (NRs) exert crucial functions in controlling metabolism and inflammation by both positively and negatively regulating gene expression. Recent evidence suggests that the transcriptional activities of many NRs can be modulated and even re-directed through post-translational modification by small ubiquitin-related modifiers (SUMO). SUMOylation triggers a plethora of diverse molecular events that can alter both the fate and function of modified NRs at the nongenomic, genomic, and epigenomic level. However, it is the intriguing link of SUMOylation to transcriptional repression, and in particular to transrepression, that has emerged as a common underlying mechanism that impacts on biological processes controlled by NRs. It further appears that the cell-type-specific SUMOylation status of NRs can be regulated by ligands and by signal-dependent crosstalk of post-translational modifications. Given the causal role of altered NR signaling in the development and pathogenesis of human diseases, it is likely that aberrant SUMO conjugation, deconjugation, or interpretation contributes to these alterations. Here, we review the current progress made in both the study and understanding of the molecular mechanisms and consequences of NR SUMOylation and also discuss the physiological and pharmacological implications with a particular focus on transrepression pathways that link metabolism and inflammation. This article is part of a Special Issue entitled: Translating nuclear receptors from health to disease.
Insights
Small ubiquitin-related modifiers (SUMO) regulate nuclear receptors (NRs) by altering gene expression. SUMOylation impacts NR functions, particularly in transrepression, linking metabolism and inflammation, and may contribute to human diseases.
Area of Science:
- Molecular Biology
- Cell Biology
- Endocrinology
Background:
- Nuclear receptors (NRs) are key regulators of metabolism and inflammation.
- Post-translational modification, specifically SUMOylation, significantly impacts NR transcriptional activity.
- SUMOylation can modulate NR function at multiple biological levels (nongenomic, genomic, epigenomic).
Purpose of the Study:
- To review the molecular mechanisms and consequences of NR SUMOylation.
- To discuss the physiological and pharmacological implications of NR SUMOylation.
- To highlight the role of NR SUMOylation in transrepression pathways linking metabolism and inflammation.
Main Methods:
- Literature review of current research on NR SUMOylation.
- Analysis of studies investigating SUMOylation's impact on NR function.
- Examination of disease relevance and therapeutic potential.
Main Results:
- SUMOylation is a critical modulator of NR transcriptional activity, often through transrepression.
- Ligands and crosstalk of modifications regulate NR SUMOylation status.
- Aberrant SUMOylation is implicated in the pathogenesis of human diseases linked to NR signaling.
Conclusions:
- NR SUMOylation is a central mechanism influencing biological processes regulated by NRs.
- Understanding NR SUMOylation offers insights into disease mechanisms and potential therapeutic strategies.
- Targeting NR SUMOylation pathways may provide novel approaches for treating metabolic and inflammatory diseases.
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