Gene
tdrd9
- ID
- ZDB-GENE-090313-193
- Name
- tudor domain containing 9
- Symbol
- tdrd9 Nomenclature History
- Previous Names
-
- si:dkey-15f17.9 (1)
- Type
- protein_coding_gene
- Location
- Chr: 13 Mapping Details/Browsers
- Description
- Predicted to enable ATP hydrolysis activity; RNA binding activity; and helicase activity. Predicted to be involved in several processes, including male meiosis I; regulatory ncRNA-mediated gene silencing; and spermatogenesis. Predicted to act upstream of or within cell differentiation; meiotic cell cycle; and regulatory ncRNA-mediated gene silencing. Predicted to be located in piP-body. Predicted to be active in cytoplasm and nucleus. Human ortholog(s) of this gene implicated in spermatogenic failure 30. Orthologous to human TDRD9 (tudor domain containing 9).
- Genome Resources
- Note
- None
- Comparative Information
-
- All Expression Data
- No data available
- Cross-Species Comparison
- High Throughput Data
- Thisse Expression Data
- No data available
Wild Type Expression Summary
- All Phenotype Data
- No data available
- Cross-Species Comparison
- Alliance
Phenotype Summary
Mutations
Allele | Type | Localization | Consequence | Mutagen | Supplier |
---|---|---|---|---|---|
sa2676 | Allele with one point mutation | Unknown | Premature Stop | ENU | |
sa4512 | Allele with one point mutation | Unknown | Premature Stop | ENU | |
sa17024 | Allele with one point mutation | Unknown | Splice Site | ENU | |
sa22335 | Allele with one point mutation | Unknown | Premature Stop | ENU | |
sa35527 | Allele with one point mutation | Unknown | Splice Site | ENU | |
sa38952 | Allele with one point mutation | Unknown | Premature Stop | ENU |
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Human Disease
Disease Ontology Term | Multi-Species Data | OMIM Term | OMIM Phenotype ID |
---|---|---|---|
spermatogenic failure 30 | Alliance | ?Spermatogenic failure 30 | 618110 |
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Domain, Family, and Site Summary
Type | InterPro ID | Name |
---|---|---|
Conserved_site | IPR002464 | DNA/RNA helicase, ATP-dependent, DEAH-box type, conserved site |
Domain | IPR001650 | Helicase, C-terminal domain-like |
Domain | IPR002999 | Tudor domain |
Domain | IPR007502 | Helicase-associated domain |
Domain | IPR011545 | DEAD/DEAH box helicase domain |
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Domain Details Per Protein
Protein | Additional Resources | Length | DEAD/DEAH box helicase domain | DNA/RNA helicase, ATP-dependent, DEAH-box type, conserved site | Helicase-associated domain | Helicase, C-terminal domain-like | Helicase superfamily 1/2, ATP-binding domain | P-loop containing nucleoside triphosphate hydrolase | SNase-like, OB-fold superfamily | Tudor domain | Tudor domain-containing protein 9, Tudor domain |
---|---|---|---|---|---|---|---|---|---|---|---|
UniProtKB:B8A4F4 | InterPro | 1342 | |||||||||
UniProtKB:A0AB32T0D8 | InterPro | 1344 |
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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 | DKEY-15F17 | ZFIN Curated Data |
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Type | Accession # | Sequence | Length (nt/aa) | Analysis |
---|---|---|---|---|
RNA | RefSeq:NM_001130512 (1) | |||
Genomic | GenBank:BX072537 (1) | 226685 nt | ||
Polypeptide | UniProtKB:A0AB32T0D8 (1) | 1344 aa |
- D'Orazio, F.M., Balwierz, P.J., González, A.J., Guo, Y., Hernández-Rodríguez, B., Wheatley, L., Jasiulewicz, A., Hadzhiev, Y., Vaquerizas, J.M., Cairns, B., Lenhard, B., Müller, F. (2021) Germ cell differentiation requires Tdrd7-dependent chromatin and transcriptome reprogramming marked by germ plasm relocalization. Developmental Cell. 56(5):641-656.e5
- Fouchécourt, S., Picolo, F., Elis, S., Lécureuil, C., Thélie, A., Govoroun, M., Brégeon, M., Papillier, P., Lareyre, J.J., Monget, P. (2019) An evolutionary approach to recover genes predominantly expressed in the testes of the zebrafish, chicken and mouse. BMC Evolutionary Biology. 19:137
- Wang, B., Du, X., Wang, H., Jin, C., Gao, C., Liu, J., Zhang, Q. (2019) Comparative studies on duplicated tdrd7 paralogs in teleosts: Molecular evolution caused neo-functionalization. Comparative biochemistry and physiology. Part D, Genomics & proteomics. 30:347-357
- Tzung, K.W., Goto, R., Saju, J.M., Sreenivasan, R., Saito, T., Arai, K., Yamaha, E., Hossain, M.S., Calvert, M.E., Orbán, L. (2015) Early Depletion of Primordial Germ Cells in Zebrafish Promotes Testis Formation. Stem Cell Reports. 4(1):61-73
- Huang, H.T., Kathrein, K.L., Barton, A., Gitlin, Z., Huang, Y.H., Ward, T.P., Hofmann, O., Dibiase, A., Song, A., Tyekucheva, S., Hide, W., Zhou, Y., and Zon, L.I. (2013) A network of epigenetic regulators guides developmental haematopoiesis in vivo. Nature cell biology. 15(12):1516-1525
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