The NR4A Subgroup: Immediate Early Response Genes with Pleiotropic Physiological Roles
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Open Access
- 8 February 2005
- journal article
- Published by SAGE Publications in Nuclear Receptor Signaling
- Vol. 4 (1) , e002
- https://doi.org/10.1621/nrs.04002
Abstract
The nuclear hormone receptor (NR) superfamily includes the orphan NR4A subgroup, comprised of Nur77 (NR4A1), Nurr1 (NR4A2) and NOR-1 (NR4A3). These NRs are classified as early response genes, are induced by a diverse range of signals, including fatty acids, stress, growth factors, cytokines, peptide hormones, phorbol esters, neurotransmitters, and physical stimuli (for example magnetic fields, shear stress). The ability to sense and rapidly respond to changes in the cellular environment thus appears to be a hallmark of this subfamily. The members of the NR4A subgroup are well conserved in the DNA binding domain (∼91–95%) and the C-terminal ligand-binding domain (∼60%), but are divergent in the N-terminal AB region. These receptors bind as monomers, homodimers and heterodimers with RXRs (to mediate retinoid signaling) to different permutations of the canonical NR binding motif. The NR4A subgroup activates gene expression in a constitutive ligand-independent manner. NR4A-mediated trans-activation (LBD) involves unusually active N-terminal AF-1 domains that mediate coactivator recruitment. Moreover, the NR4A receptors encode atypical LBDs and AF-2 domains. For example, the LBDs contain no cavity due to bulky hydrophobic residue side chains, and lack the classical coactivator-binding cleft constituted by helices 3, 4 and 12. However, a hydrophobic patch exists between helices 11 and 12, that encodes a novel cofactor interface that modulates transcriptional activity. In line with the pleiotropic physiological stimuli that induce the NR4A subgroup, these orphan NRs have been implicated in cell cycle regulation (and apoptosis), neurological disease, steroidogenesis, inflammation, carcinogenesis and atherogenesis.Keywords
This publication has 99 references indexed in Scilit:
- Thiazolidinediones inhibit TNFα induction of PAI-1 independent of PPARγ activationBiochemical and Biophysical Research Communications, 2005
- The Drosophila Nuclear Receptor E75 Contains Heme and Is Gas ResponsiveCell, 2005
- Induction Patterns of Transcription Factors of the Nur Family (Nurr1, Nur77, and Nor-1) by Typical and Atypical Antipsychotics in the Mouse Brain: Implication for Their Mechanism of ActionThe Journal of Pharmacology and Experimental Therapeutics, 2005
- The Nuclear Receptor Nor-1 Is Essential for Proliferation of the Semicircular Canals of the Mouse Inner EarMolecular and Cellular Biology, 2002
- Involvement of the nuclear orphan receptor NURR1 in the regulation of corticotropin-releasing hormone expression and actions in human inflammatory arthritisArthritis & Rheumatism, 2001
- Regulation of the Nuclear Orphan Receptor Nur77 in Bone by Parathyroid HormoneBiochemical and Biophysical Research Communications, 2001
- Structure and Expression of the Mouse Gene Encoding the Orphan Nuclear Receptor TECDNA and Cell Biology, 2000
- Identification of a novel fusion gene involving hTAFII68 and CHN from a t(9;17)(q22;q11.2) translocation in an extraskeletal myxoid chondrosarcomaOncogene, 1999
- Induction of Mitogen-Inducible Nuclear Orphan Receptor by Interleukin 1 in Human Synovial and Gingival FibroblastsBiochemical and Biophysical Research Communications, 1998
- Dopamine Biosynthesis Is Selectively Abolished in Substantia Nigra/Ventral Tegmental Area but Not in Hypothalamic Neurons in Mice with Targeted Disruption of the Nurr1 GeneMolecular and Cellular Neuroscience, 1998