Androgen receptor ubiquitination links KCTD13 to genitourinary tract defects

Ahmed Chahdi1,2, Carolina Jorgez3, Jill A Rosenfeld4

  • 1Department of Surgery, Nemours Children's Health, Orlando, Florida, USA.

Insights

Potassium channel tetramerization domain containing 13 (KCTD13) protein regulates androgen receptor (AR) ubiquitination. KCTD13

Area of Science:

  • Molecular Biology
  • Genetics
  • Biochemistry

Background:

  • Potassium channel tetramerization domain containing 13 (KCTD13) is an adapter protein for cullin3-based E3 ubiquitin ligases.
  • Copy number variants in KCTD13 are associated with genitourinary tract anomalies.
  • Androgen receptor (AR) signaling is crucial for male reproductive development.

Purpose of the Study:

  • To investigate the role of KCTD13 in regulating androgen receptor (AR) ubiquitination and function.
  • To elucidate the mechanism by which KCTD13 affects AR ubiquitination mediated by different E3 ligases.
  • To understand the impact of KCTD13 deficiency on AR target gene expression.

Main Methods:

  • Western blotting to assess protein levels and ubiquitination.
  • Co-immunoprecipitation assays to study protein-protein interactions.
  • Quantitative PCR to measure gene expression.
  • Experiments using recombinant proteins and KCTD13 mutants (KCTD13 ΔBTB).

Main Results:

  • KCTD13 deficiency in mice led to increased AR ubiquitination and decreased AR protein levels in testes.
  • KCTD13 enhanced CUL3-dependent AR ubiquitination but did not affect CUL3 binding to AR.
  • KCTD13 inhibited STUB1-mediated AR ubiquitination by disrupting the AR/STUB1 complex, requiring its BTB domain.
  • KCTD13 increased the expression of the AR target gene FOXJ1.

Conclusions:

  • KCTD13 plays a dual role in regulating AR ubiquitination, acting as an adaptor for CUL3 and an inhibitor for STUB1.
  • The BTB domain of KCTD13 is essential for its interaction with AR and STUB1, mediating the dissociation of the AR/STUB1 complex.
  • KCTD11 deficiency leads to increased AR ubiquitination and degradation, impacting AR signaling and potentially contributing to genitourinary anomalies.

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