4.1 Article

The Transcriptional Repressor Orphan Nuclear Receptor TLX Is Responsive to Xanthines

期刊

ACS PHARMACOLOGY & TRANSLATIONAL SCIENCE
卷 4, 期 6, 页码 1794-1807

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsptsci.1c00195

关键词

transcription factor; tailless homologue; NR2E1; neurodegeneration; caffeine

资金

  1. Aventis Foundation
  2. research funding program LOEWE of the State of Hesse, Research Center for Translational Medicine and Pharmacology TMP
  3. State of Hesse
  4. AbbVie
  5. Bayer AG
  6. Boehringer Ingelheim
  7. Canada Foundation for Innovation
  8. Eshelman Institute for Innovation
  9. Genentech
  10. Genome Canada through Ontario Genomics Institute [OGI-196]
  11. EU/EFPIA/OICR/McGill/KTH/Diamond
  12. Innovative Medicines Initiative 2 Joint Undertaking [EUbOPEN grant] [875510]
  13. Janssen
  14. Merck KGaA
  15. Pfizer
  16. Sao Paulo Research Foundation-FAPESP
  17. Takeda

向作者/读者索取更多资源

TLX, an orphan nuclear receptor highly expressed in neural stem cells, modulates its function by interacting with other receptors and co-repressors. Recent studies have identified xanthines such as caffeine as modulators of TLX, counteracting its inhibitory activity.
The orphan nuclear receptor tailless homologue (TLX) is expressed almost exclusively in neural stem cells acting as an essential factor for their survival and is hence considered as a promising drug target in neurodegeneration. However, few studies have characterized the roles of TLX due to the lack of ligands and limited functional understanding. Here, we identify xanthines including caffeine and istradefylline as TLX modulators that counteract the receptor's intrinsic repressor activity. Mutagenesis of residues lining a cavity within the TLX ligand binding domain altered the activity of these ligands, suggesting direct interactions with helix S. Using xanthines as tool compounds, we observed a ligand-sensitive recruitment of the co-repressor silencing mediator for retinoid or thyroid-hormone receptors, TLX homodimerization, and heterodimerization with the retinoid X receptor. These protein-protein interactions evolve as factors that modulate the TLX function and suggest an unprecedented role of TLX in directly repressing other nuclear receptors.

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