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ZFIN ID:
ZDB-ATB-121210-7
CITATIONS
(16 total)
Antibody Name:
Ab4-rps6
Burger, A., Vasilyev, A., Tomar, R., Selig, M.K., Nielsen, G.P., Peterson, R.T., Drummond, I.A., and Haber, D.A. (2014) A zebrafish model of chordoma initiated by notochord-driven expression of HRASV12. Disease models & mechanisms. 7(7):907-13
Jia, X.E., Ma, K., Xu, T., Gao, L., Wu, S., Fu, C., Zhang, W., Wang, Z., Liu, K., Dong, M., Jing, C., Ren, C., Dong, Z., Chen, Y., Jin, Y., Huang, Q., Chang, X., Deng, M., Li, L., Luo, L., Zhu, J., Dang, Y., Chang, H.C., Zon, L.I., Zhou, Y., Chen, S., Pan, W. (2015) Mutation of kri1l causes definitive hematopoiesis failure via PERK-dependent excessive autophagy induction. Cell Research. 25(8):946-62
Ju, B., Chen, W., Orr, B.A., Spitsbergen, J.M., Jia, S., Eden, C.J., Henson, H.E., Taylor, M.R. (2015) Oncogenic KRAS promotes malignant brain tumors in zebrafish. Molecular Cancer. 14:18
Khor, E.S., Noor, S.M., Wong, P.F. (2021) MiR-107 inhibits the sprouting of intersegmental vessels of zebrafish embryos. Protoplasma. 259(3):691-702
Khor, E.S., Noor, S.M., Wong, P.F. (2016) Expression of zTOR-associated microRNAs in zebrafish embryo treated with rapamycin. Life sciences. 150:67-75
Lanham, K.A., Nedden, M.L., Wise, V.E., Taylor, M.R. (2022) Genetically inducible and reversible zebrafish model of systemic inflammation. Biology Open. 11(3):
Oliveira, M.L., Veloso, A., Garcia, E.G., Iyer, S., Pereira, C., Barreto, V.M., Langenau, D.M., Barata, J.T. (2022) Mutant IL7R collaborates with MYC to induce T-cell acute lymphoblastic leukemia. Leukemia. 36(6):1533-1540
Payne, E., Virgilio, M., Narla, A., Sun, H., Levine, M., Paw, B.H., Berliner, N., Look, A.T., Ebert, B., and Khanna-Gupta, A. (2012) L-leucine improves the anemia and developmental defects associated with Diamond-Blackfan anemia and del(5q) MDS by activating the mTOR pathway. Blood. 120(11):2214-2224
Reichmann, F., Rimmer, N., Tilley, C.A., Dalla Vecchia, E., Pinion, J., Al Oustah, A., Carreño Gutiérrez, H., Young, A.M., McDearmid, J.R., Winter, M.J., Norton, W.H. (2020) The zebrafish histamine H3 receptor modulates aggression, neural activity and forebrain functional connectivity. Acta physiologica (Oxford, England). 230(4):e13543
Scheldeman, C., Mills, J.D., Siekierska, A., Serra, I., Copmans, D., Iyer, A.M., Whalley, B.J., Maes, J., Jansen, A.C., Lagae, L., Aronica, E., de Witte, P.A.M. (2017) mTOR-related neuropathology in mutant tsc2 zebrafish: Phenotypic, transcriptomic and pharmacological analysis. Neurobiology of disease. 108:225-237
Schultz, L.E., Solin, S.L., Wierson, W.A., Lovan, J.M., Syrkin-Nikolau, J., Lincow, D.E., Severin, A.J., Sakaguchi, D.S., McGrail, M. (2017) Vascular Endothelial Growth Factor A and Leptin Expression Associated with Ectopic Proliferation and Retinal Dysplasia in Zebrafish Optic Pathway Tumors. Zebrafish. 14(4):343-356
Shin, J., Padmanabhan, A., de Groh, E.D., Lee, J.S., Haidar, S., Dahlberg, S., Guo, F., He, S., Wolman, M.A., Granato, M., Lawson, N.D., Wolfe, S.A., Kim, S.H., Solnica-Krezel, L., Kanki, J.P., Ligon, K.L., Epstein, J.A., and Look, A.T. (2012) Zebrafish neurofibromatosis type 1 genes have redundant functions in tumorigenesis and embryonic development. Disease models & mechanisms. 5(6):881-894
Tao, T., Shi, H., Wang, M., Perez-Atayde, A.R., London, W.B., Gutierrez, A., Lemos, B., Durbin, A.D., Look, A.T. (2020) Ganglioneuromas are driven by activated AKT and can be therapeutically targeted with mTOR inhibitors. The Journal of experimental medicine. 217(10):
Xia, P., Gütl, D., Zheden, V., Heisenberg, C.P. (2019) Lateral Inhibition in Cell Specification Mediated by Mechanical Signals Modulating TAZ Activity. Cell. 176(6):1379-1392.e14
Additional Citations (2):
ZFIN Staff (2002) Scientific Curation. Manually curated data.
ZFIN Staff (2008) Antibody information from supplier. Manually curated data.
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