Morpholino
MO2-spns2
Target Location
Genomic Features
No data available
Expression
Gene expression in Wild Types + MO2-spns2
No data available
Phenotype
Phenotype resulting from MO2-spns2
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Phenotype of all Fish created by or utilizing MO2-spns2
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Citations
- Fukui, H., Terai, K., Nakajima, H., Chiba, A., Fukuhara, S., Mochizuki, N. (2014) S1P-Yap1 Signaling Regulates Endoderm Formation Required for Cardiac Precursor Cell Migration in Zebrafish. Developmental Cell. 31:128-136
- Nakanaga, K., Hama, K., Kano, K., Sato, T., Yukiura, H., Inoue, A., Saigusa, D., Tokuyama, H., Tomioka, Y., Nishina, H., Kawahara, A., and Aoki, J. (2014) Overexpression of autotaxin, a lysophosphatidic acid-producing enzyme, enhances cardia bifida induced by hypo-sphingosine-1-phosphate signaling in zebrafish embryo. Journal of biochemistry. 155(4):235-41
- Hisano, Y., Ota, S., Takada, S., and Kawahara, A. (2013) Functional cooperation of spns2 and fibronectin in cardiac and lower jaw development. Biology Open. 2(8):789-794
- Mendelson, K., Zygmunt, T., Torres-Vazquez, J., Evans, T., and Hla, T. (2013) Sphingosine-1-Phosphate Receptors S1pr1 and S1pr2 Cooperatively Regulate Embryonic Vascular Development. The Journal of biological chemistry. 288(4):2143-2156
- Kawahara, A., Nishi, T., Hisano, Y., Fukui, H., Yamaguchi, A., and Mochizuki, N. (2009) The Sphingolipid Transporter Spns2 Functions in Migration of Zebrafish Myocardial Precursors. Science (New York, N.Y.). 323(5913):524-527
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