Gene
tp73
- ID
- ZDB-GENE-030814-2
- Name
- tumor protein p73
- Symbol
- tp73 Nomenclature History
- Previous Names
-
- TAp73 (1)
- sb:eu652
- Type
- protein_coding_gene
- Location
- Chr: 8 Mapping Details/Browsers
- Description
- Enables DNA-binding transcription factor activity. Acts upstream of or within embryonic cranial skeleton morphogenesis and regulation of DNA-templated transcription. Predicted to be located in cytoplasm and nucleus. Predicted to be part of transcription regulator complex. Is expressed in several structures, including gonad; musculature system; nervous system; pharynx; and renal system. Human ortholog(s) of this gene implicated in several diseases, including Epstein-Barr virus infectious disease; cervical cancer; colorectal cancer; kidney cancer (multiple); and lung cancer (multiple). Orthologous to human TP73 (tumor protein p73).
- Genome Resources
- Note
- None
- Comparative Information
-
- All Expression Data
- 23 figures from 9 publications
- Cross-Species Comparison
- High Throughput Data
- Thisse Expression Data
-
- eu652 (12 images)
Wild Type Expression Summary
Phenotype Summary
Mutations
Allele | Type | Localization | Consequence | Mutagen | Supplier |
---|---|---|---|---|---|
la016418Tg | Transgenic insertion | Unknown | Unknown | DNA | |
la029503Tg | Transgenic insertion | Unknown | Unknown | DNA | |
uab8 | Allele with one deletion | Exon 4 | Unknown | CRISPR |
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Targeting Reagent | Created Alleles | Citations |
---|---|---|
CRISPR1-tp73 | Wang et al., 2021 | |
CRISPR2-tp73 | Russell et al., 2021 | |
MO1-tp73 | N/A | (6) |
MO2-tp73 | N/A | (3) |
MO3-tp73 | N/A | (2) |
TALEN1-tp73 | Thomas et al., 2014 |
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Human Disease
Disease Ontology Term | Multi-Species Data | OMIM Term | OMIM Phenotype ID |
---|---|---|---|
Ciliary dyskinesia, primary, 47, and lissencephaly | 619466 |
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Domain, Family, and Site Summary
Type | InterPro ID | Name |
---|---|---|
Domain | IPR001660 | Sterile alpha motif domain |
Domain | IPR010991 | p53, tetramerisation domain |
Domain | IPR011615 | p53, DNA-binding domain |
Family | IPR002117 | p53 tumour suppressor family |
Homologous_superfamily | IPR008967 | p53-like transcription factor, DNA-binding domain superfamily |
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Domain Details Per Protein
Protein | Additional Resources | Length | p53, DNA-binding domain | p53-like tetramerisation domain superfamily | p53-like transcription factor, DNA-binding domain superfamily | p53/RUNT-type transcription factor, DNA-binding domain superfamily | p53, tetramerisation domain | p53 tumour suppressor family | Sterile alpha motif domain | Sterile alpha motif/pointed domain superfamily |
---|---|---|---|---|---|---|---|---|---|---|
UniProtKB:Q801Z7 | InterPro | 640 | ||||||||
UniProtKB:B0S576 | InterPro | 640 | ||||||||
UniProtKB:A0A8M3AVI5 | InterPro | 585 | ||||||||
UniProtKB:B0S577 | InterPro | 555 |
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Interactions and Pathways
No data available
Plasmids
No data available
No data available
Relationship | Marker Type | Marker | Accession Numbers | Citations |
---|---|---|---|---|
Contained in | BAC | CH211-69A12 | ZFIN Curated Data | |
Contained in | BAC | CH211-278P7 | ZFIN Curated Data | |
Contained in | BAC | DKEY-71C4 | ZFIN Curated Data | |
Encodes | EST | eu652 | Thisse et al., 2005 |
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Type | Accession # | Sequence | Length (nt/aa) | Analysis |
---|---|---|---|---|
RNA | RefSeq:NM_183340 (1) | 2350 nt | ||
Genomic | GenBank:BX005339 (1) | 172485 nt | ||
Polypeptide | UniProtKB:B0S576 (1) | 640 aa |
- Morgan, K.J., Doggett, K., Geng, F., Mieruszynski, S., Whitehead, L., Smith, K.A., Hogan, B.M., Simons, C., Baillie, G.J., Molania, R., Papenfuss, A.T., Hall, T.E., Ober, E.A., Stainier, D.Y.R., Gong, Z., Heath, J.K. (2023) ahctf1 and kras mutations combine to amplify oncogenic stress and restrict liver overgrowth in a zebrafish model of hepatocellular carcinoma. eLIFE. 12:
- Micheloni, G., Carnovali, M., Millefanti, G., Rizzetto, M., Moretti, V., Montalbano, G., Acquati, F., Giaroni, C., Valli, R., Costantino, L., Ferrara, F., Banfi, G., Mariotti, M., Porta, G. (2021) Soy diet induces intestinal inflammation in adult Zebrafish: Role of OTX and P53 family. International journal of experimental pathology. 103(1):13-22
- Russell, K.L., Downie, J.M., Gibson, S.B., Tsetsou, S., Keefe, M.D., Duran, J.A., Figueroa, K.P., Bromberg, M.B., Murtaugh, L.C., Bonkowsky, J.L., Pulst, S.M., Jorde, L.B. (2021) Pathogenic effect of TP73 Gene Variants in People With Amyotrophic Lateral Sclerosis. Neurology. 97(3):e225-e235
- Wang, J., Thomas, H.R., Li, Z., Yeo, N.C.F., Scott, H.E., Dang, N., Hossain, M.I., Andrabi, S.A., Parant, J.M. (2021) Puma, noxa, p53, and p63 differentially mediate stress pathway induced apoptosis. Cell Death & Disease. 12:659
- Elabd, S., Jabeen, N.A., Gerber, V., Peravali, R., Bourdon, J.C., Kancherla, S., Vallone, D., Blattner, C. (2019) Delay in development and behavioural abnormalities in the absence of p53 in zebrafish. PLoS One. 14:e0220069
- Mayrhofer, M., Gourain, V., Reischl, M., Affaticati, P., Jenett, A., Joly, J.S., Benelli, M., Demichelis, F., Poliani, P.L., Sieger, D., Mione, M. (2017) A novel brain tumour model in zebrafish reveals the role of YAP activation in MAPK/PI3K induced malignant growth. Disease models & mechanisms. 10(1):15-28
- Diotel, N., Viales, R.R., Armant, O., März, M., Ferg, M., Rastegar, S., Strähle, U. (2015) Comprehensive expression map of transcription regulators in the adult zebrafish telencephalon reveals distinct neurogenic niches. The Journal of comparative neurology. 523(8):1202-21
- Joerger, A.C., Wilcken, R., Andreeva, A. (2014) Tracing the Evolution of the p53 Tetramerization Domain. Structure (London, England : 1993). 22:1301-10
- Thomas, H.R., Percival, S.M., Yoder, B.K., Parant, J.M. (2014) High-Throughput Genome Editing and Phenotyping Facilitated by High Resolution Melting Curve Analysis. PLoS One. 9:e114632
- de la Garza, G., Schleiffarth, J.R., Dunnwald, M., Mankad, A., Weirather, J.L., Bonde, G., Butcher, S., Mansour, T.A., Kousa, Y.A., Fukazawa, C.F., Houston, D.W., Manak, J.R., Schutte, B.C., Wagner, D.S., and Cornell, R.A. (2013) Interferon Regulatory Factor 6 Promotes Differentiation of the Periderm by Activating Expression of Grainyhead-Like 3. The Journal of investigative dermatology. 133(1):68-77
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