Genomic Feature
sd32Tg
- ID
- ZDB-ALT-150602-13
- Name
- sd32Tg
- Synonyms
- None
- Affected Genomic Region
- This feature is representative of one or more unknown insertion sites.
- Construct
- Type
- Transgenic insertion (1)
- Protocol
- embryos treated with DNA
- Lab of Origin
- Traver Lab
- Current Source
- Zebrafish International Resource Center (ZIRC) ( order this )
- Other Pages
Notes
No data available
No data available
Variants
- Variant Type
- Transgenic Insertion
- Variant Location
- Unmapped
- Nucleotide change
- Variant Notes
- None
Effect on DNA/cDNA, transcript, protein (from publications)
- DNA/cDNA Change
- None
- Transcript Consequence
- None
- Protein Consequence
- None
- Flanking Sequence
- None
- Additional Sequence
- None
Fish
Supplemental Information
- Genotyping protocol
- None
- Demy, D.L., Touret, A.L., Lancino, M., Tauzin, M., Capuana, L., Pierre, C., Herbomel, P. (2022) Trim33 conditions the lifespan of primitive macrophages and onset of definitive macrophage production. Development (Cambridge, England). 149(18):
- Cacialli, P., Mahony, C.B., Petzold, T., Bordignon, P., Rougemont, A.L., Bertrand, J.Y. (2021) A connexin/ifi30 pathway bridges HSCs with their niche to dampen oxidative stress. Nature communications. 12:4484
- Quillien, A., Gilbert, G., Boulet, M., Ethuin, S., Waltzer, L., Vandel, L. (2021) Prmt5 promotes vascular morphogenesis independently of its methyltransferase activity. PLoS Genetics. 17:e1009641
- Soto, R.A., Najia, M.A.T., Hachimi, M., Frame, J.M., Yette, G.A., Lummertz da Rocha, E., Stankunas, K., Daley, G.Q., North, T.E. (2021) Sequential regulation of hemogenic fate and hematopoietic stem and progenitor cell formation from arterial endothelium by Ezh1/2. Stem Cell Reports. 16(7):1718-1734
- Kasper, D.M., Hintzen, J., Wu, Y., Ghersi, J.J., Mandl, H.K., Salinas, K.E., Armero, W., He, Z., Sheng, Y., Xie, Y., Heindel, D.W., Park, E.J., Sessa, W.C., Mahal, L.K., Lebrilla, C., Hirschi, K.K., Nicoli, S. (2020) The N-glycome regulates the endothelial-to-hematopoietic transition. Science (New York, N.Y.). 370:1186-1191
- Grainger, S., Nguyen, N., Richter, J., Setayesh, J., Lonquich, B., Oon, C.H., Wozniak, J.M., Barahona, R., Kamei, C.N., Houston, J., Carrillo-Terrazas, M., Drummond, I.A., Gonzalez, D., Willert, K., Traver, D. (2019) EGFR is required for Wnt9a-Fzd9b signalling specificity in haematopoietic stem cells. Nature cell biology. 21(6):721-730
- Bickers, C., Española, S.D., Grainger, S., Pouget, C., Traver, D. (2018) Zebrafish snai2 mutants fail to phenocopy morphant phenotypes. PLoS One. 13:e0202747
- Ferrero, G., Mahony, C.B., Dupuis, E., Yvernogeau, L., Di Ruggiero, E., Miserocchi, M., Caron, M., Robin, C., Traver, D., Bertrand, J.Y., Wittamer, V. (2018) Embryonic Microglia Derive from Primitive Macrophages and Are Replaced by cmyb-Dependent Definitive Microglia in Zebrafish. Cell Reports. 24:130-141
- Grainger, S., Richter, J., Palazón, R.E., Pouget, C., Lonquich, B., Wirth, S., Grassme, K.S., Herzog, W., Swift, M.R., Weinstein, B.M., Traver, D., Willert, K. (2016) Wnt9a Is Required for the Aortic Amplification of Nascent Hematopoietic Stem Cells. Cell Reports. 17:1595-1606
- Butko, E., Distel, M., Pouget, C., Weijts, B., Kobayashi, I., Ng, K., Mosimann, C., Poulain, F.E., McPherson, A., Ni, C.W., Stachura, D.L., Del Cid, N., Espín-Palazón, R., Lawson, N.D., Dorsky, R., Clements, W.K., Traver, D. (2015) Gata2b is a restricted early regulator of hemogenic endothelium in the zebrafish embryo. Development (Cambridge, England). 142:1050-61
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