Lab
Cone Lab
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Statement of Research Interest
Lab Members
Williams, Savannah Fish Facility Staff |
- Shainer, I., Michel, M., Marquart, G.D., Bhandiwad, A.A., Zmora, N., Ben-Moshe Livne, Z., Zohar, Y., Hazak, A., Mazon, Y., Förster, D., Hollander-Cohen, L., Cone, R.D., Burgess, H.A., Gothilf, Y. (2019) Agouti-Related Protein 2 Is a New Player in the Teleost Stress Response System. Current biology : CB. 29(12):2009-2019.e7
- Shainer, I., Buchshtab, A., Hawkins, T.A., Wilson, S.W., Cone, R.D., Gothilf, Y. (2017) Novel hypophysiotropic AgRP2 neurons and pineal cells revealed by BAC transgenesis in zebrafish. Scientific Reports. 7:44777
- Guillot, R., Cortés, R., Navarro, S., Mischitelli, M., García-Herranz, V., Sánchez, E., Cal, L., Navarro, J.C., Míguez, J., Afanasyev, S., Krasnov, A., Cone, R.D., Rotllant, J., Cerdá-Reverter, J.M. (2016) Behind melanocortin antagonist overexpression in the zebrafish brain: A behavioral and transcriptomic approach. Hormones and behavior. 82:87-100
- Michel, M., Page-McCaw, P.S., Chen, W., Cone, R.D. (2016) Leptin signaling regulates glucose homeostasis, but not adipostasis, in the zebrafish. Proceedings of the National Academy of Sciences of the United States of America. 113(11):3084-9
- Williams, S.Y., Renquist, B.J. (2016) High Throughput Danio Rerio Energy Expenditure Assay. Journal of visualized experiments : JoVE. (107):e53297
- Eom, J., Hong, M., Cone, R.D., and Song, Y. (2013) Zebrafish ghrelin is expressed in pancreatic endocrine cells and regulated by metabolic state. Biochemical and Biophysical Research Communications. 439(1):115-20
- Renquist, B.J., Zhang, C., Williams, S.Y., and Cone, R.D. (2013) Development of an Assay for High-Throughput Energy Expenditure Monitoring in the Zebrafish. Zebrafish. 10(3):343-52
- Sebag, J.A., Zhang, C., Hinkle, P.M., Bradshaw, A.M., and Cone, R.D. (2013) Developmental control of the melanocortin-4 receptor by MRAP2 proteins in zebrafish. Science (New York, N.Y.). 341(6143):278-281
- Zhang, C., Forlano, P.M., and Cone, R.D. (2012) AgRP and POMC neurons are hypophysiotropic and coordinately regulate multiple endocrine axes in a larval teleost. Cell Metabolism. 15(2):256-264
- Zhang, C., Song, Y., Thompson, D.A., Madonna, M.A., Millhauser, G.L., Toro, S., Varga, Z., Westerfield, M., Gamse, J., Chen, W., Cone, R.D. (2010) Pineal-specific agouti protein regulates teleost background adaptation. Proceedings of the National Academy of Sciences of the United States of America. 107(47):20164-71
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