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Article
Disrupting SUMOylation Enhances Transcriptional Function and Ameliorates Polyglutamine Androgen Receptor-Mediated Disease
Journal of Clinical Investigation
  • Jason P. Chua
  • Satya L. Reddy
  • Zhigang Yu
  • Elisa Georgetti
  • Heather L. Montie, Philadelphia College of Osteopathic Medicine
  • Sarmistha Mukherjee
  • Jake Higgins
  • Richard C. McEachin
  • Diane M. Robins
  • Diane E. Merry
Document Type
Article
Publication Date
2-1-2015
Abstract

Expansion of the polyglutamine (polyQ) tract within the androgen receptor (AR) causes neuromuscular degeneration in individuals with spinobulbar muscular atrophy (SBMA). PolyQ AR has diminished transcriptional function and exhibits ligand-dependent proteotoxicity, features that have both been implicated in SBMA; however, the extent to which altered AR transcriptional function contributes to pathogenesis remains controversial. Here, we sought to dissociate effects of diminished AR function from polyQ-mediated proteotoxicity by enhancing the transcriptional activity of polyQ AR. To accomplish this, we bypassed the inhibitory effect of AR SUMOylation (where SUMO indicates small ubiquitin-like modifier) by mutating conserved lysines in the polyQ AR that are sites of SUMOylation. We determined that replacement of these residues by arginine enhances polyQ AR activity as a hormone dependent transcriptional regulator. In a murine model, disruption of polyQ AR SUMOylation rescued exercise endurance and type I muscle fiber atrophy; it also prolonged survival. These changes occurred without overt alterations in polyQ AR expression or aggregation, revealing the favorable trophic support exerted by the ligand-activated receptor. Our findings demonstrate beneficial effects of enhancing the transcriptional function of the ligand-activated polyQ AR and indicate that the SUMOylation pathway may be a potential target for therapeutic intervention in SBMA.

Comments

This article was published online in Journal of Clinical Investigation, 2015.

The published version is available at http://dx.doi.org/10.1172/JCI73214

Copyright ©The American Society for Clinical Investigation.

Citation Information
Jason P. Chua, Satya L. Reddy, Zhigang Yu, Elisa Georgetti, et al.. "Disrupting SUMOylation Enhances Transcriptional Function and Ameliorates Polyglutamine Androgen Receptor-Mediated Disease" Journal of Clinical Investigation Vol. 125 Iss. 2 (2015) p. 831 - 845
Available at: http://works.bepress.com/heather_montie/1/