ArticleActa biochimica et biophysica Sinica2022
Structural overview and perspectives of the nuclear receptors, a major family as the direct targets for small-molecule drugs.
Article in Acta biochimica et biophysica Sinica, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
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7 citing papers in PubMed, 13 citations in OpenAlex.
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- Molecular mechanism of the crosstalk between glucocorticoid receptor (GR) and hypoxia-inducible factor 3α (HIF-3α) pathways.Marine life science & technology · 2025Article
- Regulation ofInternational journal of molecular sciences · 2025Review
- Nuclear receptors as novel regulators that modulate cancer radiosensitivity and normal tissue radiotoxicity.Molecular cancer · 2025Review
- Unravelling the conundrum of nucleolar NR2F1 localization using antibody-based approaches in vitro and in vivo.Communications biology · 2025Article
- Hepatocyte nuclear factor 4 located in different developmental stages of Schistosoma japonicum and involved in important metabolic pathways.Biomedical journal · 2025Article
- Integrative analysis reveals structural basis for transcription activation of Nurr1 and Nurr1-RXRα heterodimer.Proceedings of the National Academy of Sciences of the United States of America · 2022Article
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4 authors at 1 institution in 1 country.
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Abstract
The nuclear receptors (NRs) are an evolutionarily related family of transcription factors, which share certain common structural characteristics and regulate the expressions of various genes by recognizing different response elements. NRs play important roles in cell differentiation, proliferation, survival and apoptosis, rendering them indispensable in many physiological activities including growth and metabolism. As a result, dysfunctions of NRs are closely related to a variety of diseases, such as diabetes, obesity, infertility, inflammation, the Alzheimer's disease, cardiovascular diseases, prostate and breast cancers. Meanwhile, small-molecule drugs directly targeting NRs have been widely used in the treatment of above diseases. Here we summarize recent progress in the structural biology studies of NR family proteins. Compared with the dozens of structures of isolated DNA-binding domains (DBDs) and the striking more than a thousand of structures of isolated ligand-binding domains (LBDs) accumulated in the Protein Data Bank (PDB) over thirty years, by now there are only a small number of multi-domain NR complex structures, which reveal the integration of different NR domains capable of the allosteric signal transduction, or the detailed interactions between NR and various coregulator proteins. On the other hand, the structural information about several orphan NRs is still totally unavailable, hindering the further understanding of their functions. The fast development of new technologies in structural biology will certainly help us gain more comprehensive information of NR structures, inspiring the discovery of novel NR-targeting drugs with a new binding site beyond the classic LBD pockets and/or a new mechanism of action.
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