Gene
ect2
- ID
- ZDB-GENE-040831-2
- Name
- epithelial cell transforming 2
- Symbol
- ect2 Nomenclature History
- Previous Names
- None
- Type
- protein_coding_gene
- Location
- Chr: 11 Mapping Details/Browsers
- Description
- Predicted to enable guanyl-nucleotide exchange factor activity. Acts upstream of or within cytokinetic process. Predicted to be located in cytoplasm. Predicted to be active in cell cortex and nucleus. Is expressed in midbrain. Orthologous to human ECT2 (epithelial cell transforming 2).
- Genome Resources
- Note
- None
- Comparative Information
-
- All Expression Data
- 2 figures from 2 publications
- Cross-Species Comparison
- High Throughput Data
- Thisse Expression Data
- No data available
Wild Type Expression Summary
Phenotype Summary
Mutations
Targeting Reagent | Created Alleles | Citations |
---|---|---|
CRISPR1-ect2 | Zebrafish Nomenclature Committee | |
CRISPR2-ect2 | Zebrafish Nomenclature Committee |
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Human Disease
Domain, Family, and Site Summary
Domain Details Per Protein
Protein | Length | BRCT domain | BRCT domain superfamily | Dbl homology (DH) domain superfamily | ECT2, BRCT0 domain | ECT2, PH domain | Guanine-nucleotide dissociation stimulator, CDC24, conserved site | Guanine nucleotide exchange factor Ect2 | PH-like domain superfamily |
---|---|---|---|---|---|---|---|---|---|
UniProtKB:A0A8M2B1T9
|
946 | ||||||||
UniProtKB:Q6DRB9
|
878 | ||||||||
UniProtKB:F1QVS6
|
976 | ||||||||
UniProtKB:A0A2R8Q1Z1
|
980 | ||||||||
UniProtKB:A0A8M2B2N3
|
1012 |
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Interactions and Pathways
No data available
Plasmids
No data available
Construct | Regulatory Region | Coding Sequence | Species | Tg Lines | Citations |
---|---|---|---|---|---|
Tg(hsp70l:FRT-NLS-PhiYFP-FRT-NLS-Cre-2A-dnect2,cryaa:ZsYellow) |
| 1 | González-Rosa et al., 2018 | ||
Tg(myl7:EGFP-2A-dnect2) |
| 1 | González-Rosa et al., 2018 |
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Relationship | Marker Type | Marker | Accession Numbers | Citations |
---|---|---|---|---|
Contained in | BAC | CH211-153M1 | ZFIN Curated Data | |
Encodes | cDNA | MGC:111792 | ZFIN Curated Data |
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Type | Accession # | Sequence | Length (nt/aa) | Analysis |
---|---|---|---|---|
RNA | RefSeq:NM_001003883 (1) | 3054 nt | ||
Genomic | GenBank:CR759789 (2) | 165831 nt | ||
Polypeptide | UniProtKB:A0A8M2B2N3 (1) | 1012 aa |
- Chen, J., Li, G., Lian, J., Ma, N., Huang, Z., Li, J., Wen, Z., Zhang, W., Zhang, Y. (2021) Slc20a1b is essential for hematopoietic stem/progenitor cell expansion in zebrafish. Science China. Life sciences. 64(12):2186-2201
- Silic, M.R., Black, M.M., Zhang, G. (2021) Phylogenetic and developmental analyses indicate complex functions of Calcium-Activated Potassium Channels in zebrafish embryonic development. Developmental Dynamics : an official publication of the American Association of Anatomists. 250(10):1477-1493
- González-Rosa, J.M., Sharpe, M., Field, D., Soonpaa, M.H., Field, L.J., Burns, C.E., Burns, C.G. (2018) Myocardial Polyploidization Creates a Barrier to Heart Regeneration in Zebrafish. Developmental Cell. 44:433-446.e7
- Bayés, À., Collins, M.O., Reig-Viader, R., Gou, G., Goulding, D., Izquierdo, A., Choudhary, J.S., Emes, R.D., Grant, S.G. (2017) Evolution of complexity in the zebrafish synapse proteome. Nature communications. 8:14613
- 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
- Recher, G., Jouralet, J., Brombin, A., Heuzé, A., Mugniery, E., Hermel, J.M., Desnoulez, S., Savy, T., Herbomel, P., Bourrat, F., Peyriéras, N., Jamen, F., and Joly, J.S. (2013) Zebrafish midbrain slow-amplifying progenitors exhibit high levels of transcripts for nucleotide and ribosome biogenesis. Development (Cambridge, England). 140(24):4860-9
- Amsterdam, A., Nissen, R.M., Sun, Z., Swindell, E., Farrington, S., and Hopkins, N. (2004) Identification of 315 genes essential for early zebrafish development. Proceedings of the National Academy of Sciences of the United States of America. 101(35):12792-12797
- Strausberg,R.L., Feingold,E.A., Grouse,L.H., Derge,J.G., Klausner,R.D., Collins,F.S., Wagner,L., Shenmen,C.M., Schuler,G.D., Altschul,S.F., Zeeberg,B., Buetow,K.H., Schaefer,C.F., Bhat,N.K., Hopkins,R.F., Jordan,H., Moore,T., Max,S.I., Wang,J., Hsieh,F., Diatchenko,L., Marusina,K., Farmer,A.A., Rubin,G.M., Hong,L., Stapleton,M., Soares,M.B., Bonaldo,M.F., Casavant,T.L., Scheetz,T.E., Brownstein,M.J., Usdin,T.B., Toshiyuki,S., Carninci,P., Prange,C., Raha,S.S., Loquellano,N.A., Peters,G.J., Abramson,R.D., Mullahy,S.J., Bosak,S.A., McEwan,P.J., McKernan,K.J., Malek,J.A., Gunaratne,P.H., Richards,S., Worley,K.C., Hale,S., Garcia,A.M., Gay,L.J., Hulyk,S.W., Villalon,D.K., Muzny,D.M., Sodergren,E.J., Lu,X., Gibbs,R.A., Fahey,J., Helton,E., Ketteman,M., Madan,A., Rodrigues,S., Sanchez,A., Whiting,M., Madan,A., Young,A.C., Shevchenko,Y., Bouffard,G.G., Blakesley,R.W., Touchman,J.W., Green,E.D., Dickson,M.C., Rodriguez,A.C., Grimwood,J., Schmutz,J., Myers,R.M., Butterfield,Y.S., Krzywinski,M.I., Skalska,U., Smailus,D.E., Schnerch,A., Schein,J.E., Jones,S.J., and Marra,M.A. (2002) Generation and initial analysis of more than 15,000 full-length human and mouse cDNA sequences. Proceedings of the National Academy of Sciences of the United States of America. 99(26):16899-903
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