Gene
nr5a2
- ID
- ZDB-GENE-990415-79
- Name
- nuclear receptor subfamily 5, group A, member 2
- Symbol
- nr5a2 Nomenclature History
- Previous Names
- Type
- protein_coding_gene
- Location
- Chr: 22 Mapping Details/Browsers
- Description
- Enables DNA binding activity and DNA-binding transcription factor activity. Involved in cartilage development and positive regulation of tendon cell differentiation. Acts upstream of or within digestive system development; hepatoblast differentiation; and regulation of DNA-templated transcription. Predicted to be located in chromosome and nucleus. Predicted to be part of RNA polymerase II transcription regulator complex. Is expressed in several structures, including digestive system; endocrine system; head; nervous system; and slow muscle cell. Orthologous to human NR5A2 (nuclear receptor subfamily 5 group A member 2).
- Genome Resources
- Note
- None
- Comparative Information
-
- All Expression Data
- 32 figures from 19 publications
- Cross-Species Comparison
- High Throughput Data
- Thisse Expression Data
-
- ay034061 (29 images)
Wild Type Expression Summary
- All Phenotype Data
- 10 figures from 3 publications
- Cross-Species Comparison
- Alliance
Phenotype Summary
Mutations
Targeting Reagent | Created Alleles | Citations |
---|---|---|
CRISPR1-nr5a2 | Chen et al., 2023 | |
CRISPR2-nr5a2 | Chen et al., 2023 | |
CRISPR3-nr5a2 | Chen et al., 2023 | |
CRISPR4-nr5a2 | Chen et al., 2023 | |
CRISPR5-nr5a2 | Chen et al., 2023 | |
CRISPR6-nr5a2 | Chen et al., 2023 | |
MO1-nr5a2 | N/A | (4) |
MO2-nr5a2 | N/A | (2) |
TALEN1-nr5a2 | (2) | |
TALEN2-nr5a2 | (2) |
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Human Disease
Domain, Family, and Site Summary
Type | InterPro ID | Name |
---|---|---|
Domain | IPR000536 | Nuclear hormone receptor, ligand-binding domain |
Domain | IPR001628 | Zinc finger, nuclear hormone receptor-type |
Family | IPR001723 | Nuclear hormone receptor |
Family | IPR016355 | Nuclear hormone receptor family 5-like |
Homologous_superfamily | IPR013088 | Zinc finger, NHR/GATA-type |
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Domain Details Per Protein
Protein | Additional Resources | Length | Nuclear hormone receptor | Nuclear hormone receptor family 5-like | Nuclear hormone receptor, ligand-binding domain | Nuclear hormone receptor-like domain superfamily | Zinc finger, NHR/GATA-type | Zinc finger, nuclear hormone receptor-type |
---|---|---|---|---|---|---|---|---|
UniProtKB:A0A8M3AXL9 | InterPro | 507 | ||||||
UniProtKB:Q90YL6 | InterPro | 517 |
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- Genome Browsers
Interactions and Pathways
No data available
Plasmids
- Shi, W., Yi, X., Ruan, H., Wang, D., Wu, D., Jiang, P., Luo, L., Ma, X., Jiang, F., Li, C., Wu, W., Luo, L., Li, L., Wang, G., Qiu, J., Huang, H. (2025) An animal model recapitulates human hepatic diseases associated with GATA6 mutations. Proceedings of the National Academy of Sciences of the United States of America. 122:e2317801121e2317801121
- Ruan, Y., Li, X., Zhai, G., Lou, Q., Jin, X., He, J., Yin, Z. (2024) Estrogen Signaling Inhibits the Expression of anti-Müllerian hormone (amh) and gonadal-soma-derived factor (gsdf) during the Critical Time of Sexual Fate Determination in Zebrafish. International Journal of Molecular Sciences. 25(3):
- Chen, H.J., Barske, L., Talbot, J.C., Dinwoodie, O.M., Roberts, R.R., Farmer, D.T., Jimenez, C., Merrill, A.E., Tucker, A.S., Crump, J.G. (2023) Nuclear receptor Nr5a2 promotes diverse connective tissue fates in the jaw. Developmental Cell. 58(6):461-473.e7
- England, S.J., Rusnock, A.K., Mujcic, A., Kowalchuk, A., de Jager, S., Hilinski, W.C., Juárez-Morales, J.L., Smith, M.E., Grieb, G., Banerjee, S., Lewis, K.E. (2023) Molecular analyses of zebrafish V0v spinal interneurons and identification of transcriptional regulators downstream of Evx1 and Evx2 in these cells. Neural Development. 18:88
- Fabian, P., Tseng, K.C., Thiruppathy, M., Arata, C., Chen, H.J., Smeeton, J., Nelson, N., Crump, J.G. (2022) Lifelong single-cell profiling of cranial neural crest diversification in zebrafish. Nature communications. 13:13
- Kim, Y.C., Lee, S.R., Jeon, H.J., Kim, K., Kim, M.J., Choi, S.D., Lee, S.E. (2020) Acute toxicities of fluorene, fluorene-1-carboxylic acid, and fluorene-9-carboxylic acid on zebrafish embryos (Danio rerio): Molecular mechanisms of developmental toxicities of fluorene-1-carboxylic acid. Chemosphere. 260:127622
- Schredelseker, T., Driever, W. (2020) Conserved Genoarchitecture of the Basal Hypothalamus in Zebrafish Embryos. Frontiers in Neuroanatomy. 14:3
- Schredelseker, T., Veit, F., Dorsky, R.I., Driever, W. (2020) Bsx Is Essential for Differentiation of Multiple Neuromodulatory Cell Populations in the Secondary Prosencephalon. Frontiers in neuroscience. 14:525
- Yuan, C., Zhang, C., Qi, Y., Li, D., Hu, Y., Huang, D. (2019) 2,4-Dichlorophenol induced feminization of zebrafish by down-regulating male-related genes through DNA methylation. Ecotoxicology and environmental safety. 189:110042
- Yang, Y.J., Wang, Y., Li, Z., Zhou, L., Gui, J.F. (2017) Sequential, Divergent, and Cooperative Requirements of Foxl2a and Foxl2b in Ovary Development and Maintenance of Zebrafish.. Genetics. 205(4):1551-1572
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