4.6 Article

Interaction with the Bardet-Biedl Gene Product TRIM32/BBS11 Modifies the Half-life and Localization of Glis2/NPHP7

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 289, 期 12, 页码 8390-8401

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M113.534024

关键词

Genetic Diseases; Protein Degradation; Protein Stability; Transcription Regulation; Ubiquitylation; Bardet-Biedl Syndrome; Ciliopathies; Nephronophthisis

资金

  1. Deutsche Forschungsgemeinschaft [KFO 201]
  2. European Community [241955]
  3. [Sonderforschungsbereich 746]

向作者/读者索取更多资源

Background: NPHP and BBS are closely related syndromes, but the underlying mechanisms are unclear. Results: BBS11 promotes accumulation of NPHP7, changing the properties of NPHP7. Conclusion: NPHP and BBS gene products may be involved in similar signaling pathways. Significance: These findings may help to explain the clinical overlap between certain ciliopathies. Although the two ciliopathies Bardet-Biedl syndrome and nephronophthisis share multiple clinical manifestations, the molecular basis for this overlap remains largely unknown. Both BBS11 and NPHP7 are unusual members of their respective gene families. Although BBS11/TRIM32 represents a RING finger E3 ubiquitin ligase also involved in hereditary forms of muscular dystrophy, NPHP7/Glis2 is a Gli-like transcriptional repressor that localizes to the nucleus, deviating from the ciliary localization of most other ciliopathy-associated gene products. We found that BBS11/TRIM32 and NPHP7/Glis2 can physically interact with each other, suggesting that both proteins form a functionally relevant protein complex in vivo. This hypothesis was further supported by the genetic interaction and synergist cyst formation in the zebrafish pronephros model. However, contrary to our expectation, the E3 ubiquitin ligase BBS11/TRIM32 was not responsible for the short half-life of NPHP7/Glis2 but instead promoted the accumulation of mixed Lys(48)/Lys(63)-polyubiquitylated NPHP7/Glis2 species. This modification not only prolonged the half-life of NPHP7/Glis2, but also altered the subnuclear localization and the transcriptional activity of NPHP7/Glis2. Thus, physical and functional interactions between NPHP and Bardet-Biedl syndrome gene products, demonstrated for Glis2 and TRIM32, may help to explain the phenotypic similarities between these two syndromes.

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