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The DEAD-box protein DP103 (Ddx20 or Gemin-3) represses orphan nuclear receptor activity via SUMO modification. | LitMetric

The DEAD-box protein DP103 (Ddx20 or Gemin-3) represses orphan nuclear receptor activity via SUMO modification.

Mol Cell Biol

Department of Physiology, Biomedical Sciences Graduate Program, Graduate Program in Biological Sciences, Mission Bay Campus, University of California, San Francisco, Box 0444, San Francisco, CA 94143-2611, USA.

Published: March 2005

AI Article Synopsis

  • The study reveals that orphan nuclear receptors, specifically SF-1 and liver receptor homolog 1, are regulated by SUMO modification, which suppresses their activity.
  • Mutating certain lysine residues or introducing SUMO isopeptidase SENP1 significantly boosts the activity of these receptors, suggesting that SUMO modification is crucial in regulating their function.
  • The findings indicate that direct interaction between sumoylated SF-1 and the DEAD-box protein DP103 plays a key role in this repression, involving specific E3-SUMO ligase candidates that enhance this SUMOylation process.

Article Abstract

Structural analysis of nuclear receptor subfamily V orphan nuclear receptors suggests that ligand-independent mechanisms must regulate this subclass of receptors. Here, we report that steroidogenic factor 1 (SF-1) and liver receptor homolog 1 are repressed via posttranslational SUMO modification at conserved lysines within the hinge domain. Indeed, mutating these lysines or adding the SUMO isopeptidase SENP1 dramatically increased both native and Gal4-chimera receptor activities. The mechanism by which SUMO conjugation attenuates SF-1 activity was found to be largely histone deacetylase independent and was unaffected by the AF2 corepressor Dax1. Instead, our data suggest that SUMO-mediated repression involves direct interaction of the DEAD-box protein DP103 with sumoylated SF-1. Of potential E3-SUMO ligase candidates, PIASy and PIASxalpha strongly promoted SF-1 sumoylation, and addition of DP103 enhanced both PIAS-dependent receptor sumoylation and SF-1 relocalization to discrete nuclear bodies. Taken together, we propose that DEAD-box RNA helicases are directly coupled to transcriptional repression by protein sumoylation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC549377PMC
http://dx.doi.org/10.1128/MCB.25.5.1879-1890.2005DOI Listing

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