Gene
ror2
- ID
- ZDB-GENE-060427-5
- Name
- receptor tyrosine kinase-like orphan receptor 2
- Symbol
- ror2 Nomenclature History
- Previous Names
- None
- Type
- protein_coding_gene
- Location
- Chr: 10 Mapping Details/Browsers
- Description
- Enables protein heterodimerization activity. Acts upstream of or within convergent extension involved in gastrulation. Predicted to be located in membrane. Predicted to be part of receptor complex. Predicted to be active in axon and plasma membrane. Is expressed in brain and female organism. Human ortholog(s) of this gene implicated in autosomal recessive Robinow syndrome; brachydactyly type B1; and cleft palate. Orthologous to human ROR2 (receptor tyrosine kinase like orphan receptor 2).
- Genome Resources
- Note
- None
- Comparative Information
-
- All Expression Data
- 6 figures from 6 publications
- Cross-Species Comparison
- High Throughput Data
- Thisse Expression Data
- No data available
Wild Type Expression Summary
Phenotype Summary
Mutations
Allele | Type | Localization | Consequence | Mutagen | Supplier |
---|---|---|---|---|---|
ir1093 | Allele with one delins | Exon 3 | Unknown | CRISPR | |
ir1094 | Allele with one deletion | Exon 3 | Unknown | CRISPR | |
la017614Tg | Transgenic insertion | Unknown | Unknown | DNA | |
la017615Tg | Transgenic insertion | Unknown | Unknown | DNA | |
sa17931 | Allele with one point mutation | Unknown | Premature Stop | ENU | |
sa41584 | Allele with one point mutation | Unknown | Splice Site | ENU |
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Targeting Reagent | Created Alleles | Citations |
---|---|---|
CRISPR1-ror2 | Dranow et al., 2023 | |
MO1-ror2 | N/A | (2) |
MO2-ror2 | N/A | Bai et al., 2014 |
MO3-ror2 | N/A | Young et al., 2014 |
MO4-ror2 | N/A | Young et al., 2014 |
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Human Disease
Disease Ontology Term | Multi-Species Data | OMIM Term | OMIM Phenotype ID |
---|---|---|---|
autosomal recessive Robinow syndrome | Alliance | Robinow syndrome, autosomal recessive | 268310 |
brachydactyly type B1 | Alliance | Brachydactyly, type B1 | 113000 |
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Domain, Family, and Site Summary
Domain Details Per Protein
Protein | Additional Resources | Length | Frizzled cysteine-rich domain superfamily | Frizzled domain | Immunoglobulin domain subtype | Immunoglobulin I-set | Immunoglobulin-like domain | Immunoglobulin-like domain superfamily | Immunoglobulin-like fold | Immunoglobulin subtype 2 | Kringle | Kringle, conserved site | Kringle-like fold | Kringle superfamily | Protein kinase domain | Protein kinase-like domain superfamily | Receptor Tyrosine Kinase | Serine-threonine/tyrosine-protein kinase, catalytic domain | Tyrosine-protein kinase, active site | Tyrosine-protein kinase, receptor ROR |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
UniProtKB:E7FCE4 | InterPro | 939 |
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Interactions and Pathways
Plasmids
No data available
No data available
Relationship | Marker Type | Marker | Accession Numbers | Citations |
---|---|---|---|---|
Contained in | BAC | CH211-67C21 | ZFIN Curated Data | |
Contained in | BAC | DKEY-60D5 | ZFIN Curated Data |
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Type | Accession # | Sequence | Length (nt/aa) | Analysis |
---|---|---|---|---|
RNA | RefSeq:XM_021472213 (1) | 3878 nt | ||
Genomic | GenBank:CU302204 (1) | 160675 nt | ||
Polypeptide | UniProtKB:E7FCE4 (1) | 939 aa |
- Dranow, D.B., Le Pabic, P., Schilling, T.F. (2023) The non-canonical Wnt receptor Ror2 is required for cartilage cell polarity and morphogenesis of the craniofacial skeleton in zebrafish. Development (Cambridge, England). 150(8):
- Yu, E.P.Y., Saxena, V., Perin, S., Ekker, M. (2023) Loss of dlx5a/dlx6a Locus Alters Non-Canonical Wnt Signaling and Meckel's Cartilage Morphology. Biomolecules. 13(9):
- Newman, M., Hin, N., Pederson, S., Lardelli, M. (2019) Brain transcriptome analysis of a familial Alzheimer's disease-like mutation in the zebrafish presenilin 1 gene implies effects on energy production. Molecular brain. 12:43
- Mattes, B., Dang, Y., Greicius, G., Kaufmann, L.T., Prunsche, B., Rosenbauer, J., Stegmaier, J., Mikut, R., Özbek, S., Nienhaus, G.U., Schug, A., Virshup, D.M., Scholpp, S. (2018) Wnt/PCP controls spreading of Wnt/β-catenin signals by cytonemes in vertebrates. eLIFE. 7:
- Sharma, P., MacLean, A.L., Meinecke, L., Clouthier, D., Nie, Q., Schilling, T.F. (2018) Transcriptomics reveals complex kinetics of dorsal-ventral patterning gene expression in the mandibular arch. Genesis (New York, N.Y. : 2000). 57(1):e23275
- Elkon, R., Milon, B., Morrison, L., Shah, M., Vijayakumar, S., Racherla, M., Leitch, C.C., Silipino, L., Hadi, S., Weiss-Gayet, M., Barras, E., Schmid, C.D., Ait-Lounis, A., Barnes, A., Song, Y., Eisenman, D.J., Eliyahu, E., Frolenkov, G.I., Strome, S.E., Durand, B., Zaghloul, N.A., Jones, S.M., Reith, W., Hertzano, R. (2015) RFX transcription factors are essential for hearing in mice. Nature communications. 6:8549
- Bai, Y., Tan, X., Zhang, H., Liu, C., Zhao, B., Li, Y., Lu, L., Liu, Y., Zhou, J. (2014) Ror2 Receptor Mediates Wnt11 Signaling and Affects Convergence and Extension Movements in Zebrafish. The Journal of biological chemistry. 289(30):20664-20676
- Young, T., Poobalan, Y., Tan, E.K., Tao, S., Ong, S., Wehner, P., Schwenty-Lara, J., Lim, C.Y., Sadasivam, A., Lovatt, M., Wang, S.T., Ali, Y., Borchers, A., Sampath, K., Dunn, N.R. (2014) The PDZ domain protein Mcc is a novel effector of non-canonical Wnt signaling during convergence and extension in zebrafish. Development (Cambridge, England). 141:3505-16
- Challa, A.K., and Chatti, K. (2013) Conservation and Early Expression of Zebrafish Tyrosine Kinases Support the Utility of Zebrafish as a Model for Tyrosine Kinase Biology. Zebrafish. 10(3):264-74
- Varshney, G.K., Lu, J., Gildea, D., Huang, H., Pei, W., Yang, Z., Huang, S.C., Schoenfeld, D.S., Pho, N., Casero, D., Hirase, T., Mosbrook-Davis, D.M., Zhang, S., Jao, L.E., Zhang, B., Woods, I.G., Zimmerman, S., Schier, A.F., Wolfsberg, T., Pellegrini, M., Burgess, S.M., and Lin, S. (2013) A large-scale zebrafish gene knockout resource for the genome-wide study of gene function. Genome research. 23(4):727-735
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