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ZFIN ID:
ZDB-GENE-040817-1
CITATIONS
(71 total)
Gene Name:
agouti related neuropeptide
Gene Symbol:
agrp
Ahi, E.P., Brunel, M., Tsakoumis, E., Chen, J., Schmitz, M. (2022) Appetite regulating genes in zebrafish gut; a gene expression study. PLoS One. 17:e0255201
Ahi, E.P., Brunel, M., Tsakoumis, E., Schmitz, M. (2019) Transcriptional study of appetite regulating genes in the brain of zebrafish (Danio rerio) with impaired leptin signalling. Scientific Reports. 9:20166
Baran, A., Sulukan, E., Türkoğlu, M., Goshi, A., Yildirim, S., Kankaynar, M., Bolat, İ., Kaya, M., Topal, A., Ceyhun, S.B. (2020) Is sodium carboxymethyl cellulose (CMC) really completely innocent? It may be triggering obesity. International journal of biological macromolecules. 163:2465-2473
Blanco, A.M., Bertucci, J.I., Hatef, A., Unniappan, S. (2020) Feeding and food availability modulate brain-derived neurotrophic factor, an orexigen with metabolic roles in zebrafish. Scientific Reports. 10:10727
Blanco, A.M., Bertucci, J.I., Unniappan, S. (2020) FGF21 Mimics a Fasting-Induced Metabolic State and Increases Appetite in Zebrafish. Scientific Reports. 10:6993
Braasch, I., and Postlethwait, J.H. (2011) The teleost agouti-related protein 2 gene is an ohnolog gone missing from the tetrapod genome. Proceedings of the National Academy of Sciences of the United States of America. 108(13):E47-E48
Choi, J.H., Jeong, Y.M., Kim, S., Lee, B., Ariyasiri, K., Kim, H.T., Jung, S.H., Hwang, K.S., Choi, T.I., Park, C.O., Huh, W.K., Carl, M., Rosenfeld, J.A., Raskin, S., Ma, A., Gecz, J., Kim, H.G., Kim, J.S., Shin, H.C., Park, D.S., Gerlai, R., Jamieson, B.B., Kim, J.S., Iremonger, K.J., Lee, S.H., Shin, H.S., Kim, C.H. (2018) Targeted knockout of a chemokine-like gene increases anxiety and fear responses. Proceedings of the National Academy of Sciences of the United States of America. 115(5):E1041-E1050
Cortés, R., Teles, M., Oliveira, M., Fierro-Castro, C., Tort, L., Cerdá-Reverter, J.M. (2017) Effects of acute handling stress on short-term central expression of orexigenic/anorexigenic genes in zebrafish. Fish physiology and biochemistry. 44(1):257-272
de Alba, G., Carrillo, S., Sánchez-Vázquez, F.J., López-Olmeda, J.F. (2022) Combined blue light and daily thermocycles enhance zebrafish growth and development. Journal of experimental zoology. Part A, Ecological and integrative physiology. 337(5):501-515
Del Vecchio, G., Murashita, K., Verri, T., Gomes, A.S., Rønnestad, I. (2021) Leptin receptor-deficient (knockout) zebrafish: effects on nutrient acquisition. General and comparative endocrinology. 310:113832
den Broeder, M.J., Moester, M.J.B., Kamstra, J.H., Cenijn, P.H., Davidoiu, V., Kamminga, L.M., Ariese, F., de Boer, J.F., Legler, J. (2017) Altered Adipogenesis in Zebrafish Larvae Following High Fat Diet and Chemical Exposure Is Visualised by Stimulated Raman Scattering Microscopy. International Journal of Molecular Sciences. 18(4)
Drew, R.E., Rodnick, K.J., Settles, M.L., Wacyk, J., Churchill, E.J., Powell, M.S., Hardy, R.W., Murdoch, G.K., Hill, R.A., and Robison, B.D. (2008) Effect of starvation on transcriptomes of brain and liver in adult female zebrafish (Danio rerio). Physiological Genomics. 35(3):283-295
Duan, W., Huang, G., Sui, Y., Wang, K., Yu, Y., Chu, X., Cao, X., Chen, L., Liu, J., Eichler, E.E., Xiong, B. (2024) Deficiency of
DDX3X
results in neurogenesis defects and abnormal behaviors via dysfunction of the Notch signaling. Proceedings of the National Academy of Sciences of the United States of America. 121:e2404173121e2404173121
Jeong, I., Kim, E., Kim, S., Kim, H.K., Lee, D.W., Seong, J.Y., Park, H.C. (2018) mRNA expression and metabolic regulation of npy and agrp1/2 in the zebrafish brain. Neuroscience letters. 668:73-79
Klovins, J., and Schiöth, H.B. (2005) Agouti-Related Proteins (AGRPs) and Agouti-Signaling Peptide (ASIP) in Fish and Chicken. Annals of the New York Academy of Sciences. 1040:363-367
Kopp, R., Billecke, N., Legradi, J., den Broeder, M., Parekh, S.H., Legler, J. (2016) Bringing obesity to light: Rev-erbα, a central player in light-induced adipogenesis in the zebrafish?. International journal of obesity (2005). 40(5):824-32
Leibold, S., Bagivalu Lakshminarasimha, A., Gremse, F., Hammerschmidt, M., Michel, M. (2022) Long-term obesogenic diet leads to metabolic phenotypes which are not exacerbated by catch-up growth in zebrafish. PLoS One. 17:e0267933
Lin, C.Y., Yeh, K.Y., Lai, H.H., Her, G.M. (2023) AgRP Neuron-Specific Ablation Represses Appetite, Energy Intake, and Somatic Growth in Larval Zebrafish. Biomedicines. 11(2):
Lu, J., Liu, K.C., Schulz, N., Karampelias, C., Charbord, J., Hilding, A., Rautio, L., Bertolino, P., Östenson, C.G., Brismar, K., Andersson, O. (2016) IGFBP1 increases β-cell regeneration by promoting α- to β-cell transdifferentiation. The EMBO journal. 35(18):2026-44
Lu, K., Liang, X.F., Tang, S.L., Wu, J., Zhang, L., Wang, Y., Chai, F. (2023) Role of short-wave-sensitive 1 (sws1) in cone development and first feeding in larval zebrafish. Fish physiology and biochemistry. 49(5):801-813
Lutfi, E., Basili, D., Falcinelli, S., Morillas, L., Carnevali, O., Capilla, E., Navarro, I. (2021) The probiotic Lactobacillus rhamnosus mimics the dark-driven regulation of appetite markers and melatonin receptors' expression in zebrafish (Danio rerio) larvae: Understanding the role of the gut microbiome. Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology. 256:110634
Löhr, H., Hess, S., Pereira, M.M.A., Reinoß, P., Leibold, S., Schenkel, C., Wunderlich, C.M., Kloppenburg, P., Brüning, J.C., Hammerschmidt, M. (2018) Diet-Induced Growth Is Regulated via Acquired Leptin Resistance and Engages a Pomc-Somatostatin-Growth Hormone Circuit. Cell Reports. 23:1728-1741
Martella, A., Silvestri, C., Maradonna, F., Gioacchini, G., Allarà, M., Radaelli, G., Overby, D.R., Di Marzo, V., Carnevali, O. (2016) Bisphenol A induces fatty liver by an endocannabinoid-mediated positive feedback loop. Endocrinology. 157(5):1751-63
Marvel, M., Spicer, O.S., Wong, T.T., Zmora, N., Zohar, Y. (2018) Knockout of the Gnrh genes in zebrafish: effects on reproduction and potential compensation by reproductive and feeding-related neuropeptides. Biology of reproduction. 99(3):565-577
Marvel, M.M., Spicer, O.S., Wong, T.T., Zmora, N., Zohar, Y. (2019) Knockout of Gnrh2 in zebrafish (Danio rerio) reveals its roles in regulating feeding behavior and oocyte quality. General and comparative endocrinology. 280:15-23
Mentor, A., Brunström, B., Mattsson, A., Jönsson, M. (2019) Developmental exposure to a human relevant mixture of endocrine disruptors alters metabolism and adipogenesis in zebrafish (Danio rerio). Chemosphere. 238:124584
Montal, E., Lumaquin, D., Ma, Y., Suresh, S., White, R.M. (2022) Modeling the effects of genetic and diet induced obesity on melanoma progression in zebrafish. Disease models & mechanisms. 16(1):
Nasif, S., de Souza, F.S., González, L.E., Yamashita, M., Orquera, D.P., Low, M.J., Rubinstein, M. (2015) Islet 1 specifies the identity of hypothalamic melanocortin neurons and is critical for normal food intake and adiposity in adulthood. Proceedings of the National Academy of Sciences of the United States of America. 112(15):E1861-70
Navarro, S., Crespo, D., Schulz, R.W., Ge, W., Rotllant, J., Cerdá-Reverter, J.M., Rocha, A. (2022) Role of the Melanocortin System in Gonadal Steroidogenesis of Zebrafish. Animals : an open access journal from MDPI. 12(20):
Opazo, R., Plaza-Parrochia, F., Cardoso Dos Santos, G.R., Carneiro, G.R.A., Sardela, V.F., Romero, J., Valladares, L. (2019) Fasting Upregulates
npy, agrp
, and
ghsr
Without Increasing Ghrelin Levels in Zebrafish (
Danio rerio
) Larvae. Frontiers in Physiology. 9:1901
Orosz, F. (2015) On the tubulin polymerization promoting proteins of zebrafish. Biochemical and Biophysical Research Communications. 457(3):267-72
Rajeswari, J.J., Faught, E., Santos, H., Vijayan, M.M. (2024) Mineralocorticoid receptor activates postnatal adiposity in zebrafish lacking proopiomelanocortin. Journal of Cellular Physiology. 239(12):e31428
Reinoß, P., Ciglieri, E., Minére, M., Bremser, S., Klein, A., Löhr, H., Fuller, P.M., Büschges, A., Kloppenburg, P., Fenselau, H., Hammerschmidt, M. (2020) Hypothalamic Pomc Neurons Innervate the Spinal Cord and Modulate the Excitability of Premotor Circuits. Current biology : CB. 30(23):4579-4593.e7
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
Schredelseker, T., Driever, W. (2020) Conserved Genoarchitecture of the Basal Hypothalamus in Zebrafish Embryos. Frontiers in Neuroanatomy. 14:3
Schredelseker, T., Veit, F., Dorsky, R.I., Driever, W. (2020) Bsx Is Essential for Differentiation of Multiple Neuromodulatory Cell Populations in the Secondary Prosencephalon. Frontiers in neuroscience. 14:525
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
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
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
Shimada, Y., Hirano, M., Nishimura, Y., and Tanaka, T. (2012) A high-throughput fluorescence-based assay system for appetite-regulating gene and drug screening. PLoS One. 7(12):e52549
Song, Y., Cone, R.D. (2007) Creation of a genetic model of obesity in a teleost. FASEB journal : official publication of the Federation of American Societies for Experimental Biology. 21:2042-9
Song, Y., Golling, G., Thacker, T.L., and Cone, R.D. (2003) Agouti-related protein (AGRP) is conserved and regulated by metabolic state in the zebrafish, Danio rerio. Endocrine. 22(3):257-266
Toyama, R., Chen, X., Jhawar, N., Aamar, E., Epstein, J., Reany, N., Alon, S., Gothilf, Y., Klein, D.C., and Dawid, I.B. (2009) Transcriptome analysis of the zebrafish pineal gland. Developmental Dynamics : an official publication of the American Association of Anatomists. 238(7):1813-1826
Tu, W., Mart Iacute Nez L Oacute Pez, R.E.N.F., Navarro-Martin, L., Kostyniuk, D.J., Hum, C., Huang, J., Deng, M., Jin, Y., Chan, H.M., Mennigen, J. (2019) Bioconcentration and metabolic effects of emerging PFOS alternatives in developing zebrafish. Environmental science & technology. 53(22):13427-13439
van der Klaauw, A.A., Croizier, S., Mendes de Oliveira, E., Stadler, L.K.J., Park, S., Kong, Y., Banton, M.C., Tandon, P., Hendricks, A.E., Keogh, J.M., Riley, S.E., Papadia, S., Henning, E., Bounds, R., Bochukova, E.G., Mistry, V., O'Rahilly, S., Simerly, R.B., INTERVAL, UK10K Consortium, Minchin, J.E.N., Barroso, I., Jones, E.Y., Bouret, S.G., Farooqi, I.S. (2019) Human Semaphorin 3 Variants Link Melanocortin Circuit Development and Energy Balance. Cell. 176(4):729-742.e18
Wang, H., Semenova, S., Kuusela, S., Panula, P., Lehtonen, S. (2015) Tankyrases regulate glucoregulatory mechanisms and somatic growth via the central melanocortin system in zebrafish larvae. FASEB journal : official publication of the Federation of American Societies for Experimental Biology. 29(11):4435-48
Wasserman-Bartov, T., Admati, I., Lebenthal-Loinger, I., Sharabany, J., Lerer-Goldshtein, T., Appelbaum, L. (2022) Tsh induces Agrp1 neuron proliferation in Oatp1c1 deficient zebrafish. The Journal of neuroscience : the official journal of the Society for Neuroscience. 42(44):8214-8224
Wei, Z., Bagivalu Lakshminarasimha, A., Cone, R., Michel, M. (2023) Loss of Agrp1 in zebrafish: Effects on the growth and reproductive axis. General and comparative endocrinology. 336:114243
Wu, J., Zhuang, W., Lu, K., Zhang, L., Wang, Y., Chai, F., Liang, X.F. (2024) Study on the Function of Leptin Nutrient Acquisition and Energy Metabolism of Zebrafish (
Danio rerio
). International Journal of Molecular Sciences. 25(21):
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
Zhang, W., Li, Y., Chen, S., Zhang, C., Chen, L., Peng, G. (2021) nr0b1 (DAX1) loss of function in zebrafish causes hypothalamic defects via abnormal progenitor proliferation and differentiation. Journal of genetics and genomics = Yi chuan xue bao. 49(3):217-229
Zhao, T., Ye, Z., Liu, Y., Lin, H., Li, S., Zhang, Y. (2022) Mutation of spexin2 promotes feeding, somatic growth, adiposity and insulin resistance in zebrafish. American journal of physiology. Regulatory, integrative and comparative physiology. 322(5):R454-R465
Zheng, B., Li, S., Liu, Y., Li, Y., Chen, H., Tang, H., Liu, X., Lin, H., Zhang, Y., Cheng, C.H.K. (2017) Spexin Suppress Food Intake in Zebrafish: Evidence from Gene Knockout Study. Scientific Reports. 7:14643
Duan, W., Huang, G., Sui, Y., Wang, K., Yu, Y., Chu, X., Cao, X., Chen, L., Liu, J., Eichler, E.E., Xiong, B. (2024) Deficiency of
DDX3X
results in neurogenesis defects and abnormal behaviors via dysfunction of the Notch signaling. Proceedings of the National Academy of Sciences of the United States of America. 121:e2404173121e2404173121
Rajeswari, J.J., Faught, E., Santos, H., Vijayan, M.M. (2024) Mineralocorticoid receptor activates postnatal adiposity in zebrafish lacking proopiomelanocortin. Journal of Cellular Physiology. 239(12):e31428
Wu, J., Zhuang, W., Lu, K., Zhang, L., Wang, Y., Chai, F., Liang, X.F. (2024) Study on the Function of Leptin Nutrient Acquisition and Energy Metabolism of Zebrafish (
Danio rerio
). International Journal of Molecular Sciences. 25(21):
Lin, C.Y., Yeh, K.Y., Lai, H.H., Her, G.M. (2023) AgRP Neuron-Specific Ablation Represses Appetite, Energy Intake, and Somatic Growth in Larval Zebrafish. Biomedicines. 11(2):
Lu, K., Liang, X.F., Tang, S.L., Wu, J., Zhang, L., Wang, Y., Chai, F. (2023) Role of short-wave-sensitive 1 (sws1) in cone development and first feeding in larval zebrafish. Fish physiology and biochemistry. 49(5):801-813
Wei, Z., Bagivalu Lakshminarasimha, A., Cone, R., Michel, M. (2023) Loss of Agrp1 in zebrafish: Effects on the growth and reproductive axis. General and comparative endocrinology. 336:114243
Ahi, E.P., Brunel, M., Tsakoumis, E., Chen, J., Schmitz, M. (2022) Appetite regulating genes in zebrafish gut; a gene expression study. PLoS One. 17:e0255201
de Alba, G., Carrillo, S., Sánchez-Vázquez, F.J., López-Olmeda, J.F. (2022) Combined blue light and daily thermocycles enhance zebrafish growth and development. Journal of experimental zoology. Part A, Ecological and integrative physiology. 337(5):501-515
Leibold, S., Bagivalu Lakshminarasimha, A., Gremse, F., Hammerschmidt, M., Michel, M. (2022) Long-term obesogenic diet leads to metabolic phenotypes which are not exacerbated by catch-up growth in zebrafish. PLoS One. 17:e0267933
Montal, E., Lumaquin, D., Ma, Y., Suresh, S., White, R.M. (2022) Modeling the effects of genetic and diet induced obesity on melanoma progression in zebrafish. Disease models & mechanisms. 16(1):
Navarro, S., Crespo, D., Schulz, R.W., Ge, W., Rotllant, J., Cerdá-Reverter, J.M., Rocha, A. (2022) Role of the Melanocortin System in Gonadal Steroidogenesis of Zebrafish. Animals : an open access journal from MDPI. 12(20):
Wasserman-Bartov, T., Admati, I., Lebenthal-Loinger, I., Sharabany, J., Lerer-Goldshtein, T., Appelbaum, L. (2022) Tsh induces Agrp1 neuron proliferation in Oatp1c1 deficient zebrafish. The Journal of neuroscience : the official journal of the Society for Neuroscience. 42(44):8214-8224
Zhao, T., Ye, Z., Liu, Y., Lin, H., Li, S., Zhang, Y. (2022) Mutation of spexin2 promotes feeding, somatic growth, adiposity and insulin resistance in zebrafish. American journal of physiology. Regulatory, integrative and comparative physiology. 322(5):R454-R465
Del Vecchio, G., Murashita, K., Verri, T., Gomes, A.S., Rønnestad, I. (2021) Leptin receptor-deficient (knockout) zebrafish: effects on nutrient acquisition. General and comparative endocrinology. 310:113832
Lutfi, E., Basili, D., Falcinelli, S., Morillas, L., Carnevali, O., Capilla, E., Navarro, I. (2021) The probiotic Lactobacillus rhamnosus mimics the dark-driven regulation of appetite markers and melatonin receptors' expression in zebrafish (Danio rerio) larvae: Understanding the role of the gut microbiome. Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology. 256:110634
Zhang, W., Li, Y., Chen, S., Zhang, C., Chen, L., Peng, G. (2021) nr0b1 (DAX1) loss of function in zebrafish causes hypothalamic defects via abnormal progenitor proliferation and differentiation. Journal of genetics and genomics = Yi chuan xue bao. 49(3):217-229
Baran, A., Sulukan, E., Türkoğlu, M., Goshi, A., Yildirim, S., Kankaynar, M., Bolat, İ., Kaya, M., Topal, A., Ceyhun, S.B. (2020) Is sodium carboxymethyl cellulose (CMC) really completely innocent? It may be triggering obesity. International journal of biological macromolecules. 163:2465-2473
Blanco, A.M., Bertucci, J.I., Hatef, A., Unniappan, S. (2020) Feeding and food availability modulate brain-derived neurotrophic factor, an orexigen with metabolic roles in zebrafish. Scientific Reports. 10:10727
Blanco, A.M., Bertucci, J.I., Unniappan, S. (2020) FGF21 Mimics a Fasting-Induced Metabolic State and Increases Appetite in Zebrafish. Scientific Reports. 10:6993
Reinoß, P., Ciglieri, E., Minére, M., Bremser, S., Klein, A., Löhr, H., Fuller, P.M., Büschges, A., Kloppenburg, P., Fenselau, H., Hammerschmidt, M. (2020) Hypothalamic Pomc Neurons Innervate the Spinal Cord and Modulate the Excitability of Premotor Circuits. Current biology : CB. 30(23):4579-4593.e7
Schredelseker, T., Driever, W. (2020) Conserved Genoarchitecture of the Basal Hypothalamus in Zebrafish Embryos. Frontiers in Neuroanatomy. 14:3
Schredelseker, T., Veit, F., Dorsky, R.I., Driever, W. (2020) Bsx Is Essential for Differentiation of Multiple Neuromodulatory Cell Populations in the Secondary Prosencephalon. Frontiers in neuroscience. 14:525
Ahi, E.P., Brunel, M., Tsakoumis, E., Schmitz, M. (2019) Transcriptional study of appetite regulating genes in the brain of zebrafish (Danio rerio) with impaired leptin signalling. Scientific Reports. 9:20166
Marvel, M.M., Spicer, O.S., Wong, T.T., Zmora, N., Zohar, Y. (2019) Knockout of Gnrh2 in zebrafish (Danio rerio) reveals its roles in regulating feeding behavior and oocyte quality. General and comparative endocrinology. 280:15-23
Mentor, A., Brunström, B., Mattsson, A., Jönsson, M. (2019) Developmental exposure to a human relevant mixture of endocrine disruptors alters metabolism and adipogenesis in zebrafish (Danio rerio). Chemosphere. 238:124584
Opazo, R., Plaza-Parrochia, F., Cardoso Dos Santos, G.R., Carneiro, G.R.A., Sardela, V.F., Romero, J., Valladares, L. (2019) Fasting Upregulates
npy, agrp
, and
ghsr
Without Increasing Ghrelin Levels in Zebrafish (
Danio rerio
) Larvae. Frontiers in Physiology. 9:1901
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
Tu, W., Mart Iacute Nez L Oacute Pez, R.E.N.F., Navarro-Martin, L., Kostyniuk, D.J., Hum, C., Huang, J., Deng, M., Jin, Y., Chan, H.M., Mennigen, J. (2019) Bioconcentration and metabolic effects of emerging PFOS alternatives in developing zebrafish. Environmental science & technology. 53(22):13427-13439
van der Klaauw, A.A., Croizier, S., Mendes de Oliveira, E., Stadler, L.K.J., Park, S., Kong, Y., Banton, M.C., Tandon, P., Hendricks, A.E., Keogh, J.M., Riley, S.E., Papadia, S., Henning, E., Bounds, R., Bochukova, E.G., Mistry, V., O'Rahilly, S., Simerly, R.B., INTERVAL, UK10K Consortium, Minchin, J.E.N., Barroso, I., Jones, E.Y., Bouret, S.G., Farooqi, I.S. (2019) Human Semaphorin 3 Variants Link Melanocortin Circuit Development and Energy Balance. Cell. 176(4):729-742.e18
Choi, J.H., Jeong, Y.M., Kim, S., Lee, B., Ariyasiri, K., Kim, H.T., Jung, S.H., Hwang, K.S., Choi, T.I., Park, C.O., Huh, W.K., Carl, M., Rosenfeld, J.A., Raskin, S., Ma, A., Gecz, J., Kim, H.G., Kim, J.S., Shin, H.C., Park, D.S., Gerlai, R., Jamieson, B.B., Kim, J.S., Iremonger, K.J., Lee, S.H., Shin, H.S., Kim, C.H. (2018) Targeted knockout of a chemokine-like gene increases anxiety and fear responses. Proceedings of the National Academy of Sciences of the United States of America. 115(5):E1041-E1050
Jeong, I., Kim, E., Kim, S., Kim, H.K., Lee, D.W., Seong, J.Y., Park, H.C. (2018) mRNA expression and metabolic regulation of npy and agrp1/2 in the zebrafish brain. Neuroscience letters. 668:73-79
Löhr, H., Hess, S., Pereira, M.M.A., Reinoß, P., Leibold, S., Schenkel, C., Wunderlich, C.M., Kloppenburg, P., Brüning, J.C., Hammerschmidt, M. (2018) Diet-Induced Growth Is Regulated via Acquired Leptin Resistance and Engages a Pomc-Somatostatin-Growth Hormone Circuit. Cell Reports. 23:1728-1741
Marvel, M., Spicer, O.S., Wong, T.T., Zmora, N., Zohar, Y. (2018) Knockout of the Gnrh genes in zebrafish: effects on reproduction and potential compensation by reproductive and feeding-related neuropeptides. Biology of reproduction. 99(3):565-577
Cortés, R., Teles, M., Oliveira, M., Fierro-Castro, C., Tort, L., Cerdá-Reverter, J.M. (2017) Effects of acute handling stress on short-term central expression of orexigenic/anorexigenic genes in zebrafish. Fish physiology and biochemistry. 44(1):257-272
den Broeder, M.J., Moester, M.J.B., Kamstra, J.H., Cenijn, P.H., Davidoiu, V., Kamminga, L.M., Ariese, F., de Boer, J.F., Legler, J. (2017) Altered Adipogenesis in Zebrafish Larvae Following High Fat Diet and Chemical Exposure Is Visualised by Stimulated Raman Scattering Microscopy. International Journal of Molecular Sciences. 18(4)
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Additional Citations (17):
Gaudet, P., Livstone, M., Thomas, P., The Reference Genome Project (2010) Annotation inferences using phylogenetic trees. Automated Data Submission.
UniProt-GOA (2011) Gene Ontology annotation based on the automatic assignment of UniProtKB Subcellular Location terms in UniProtKB/TrEMBL entries. Manually curated data.
Zebrafish Nomenclature Committee (2016) Nomenclature Data Curation (2016). Nomenclature Committee Submission.
Zebrafish Nomenclature Committee (2019) Nomenclature Data Curation (2019). Nomenclature Committee Submission.
ZFIN Staff (2006) Curation of Ensembl Database Links. Automated Data Submission.
ZFIN Staff (2003) Curation of orthology data. Manually curated data.
ZFIN Staff (2002) Gene Ontology Annotation Through Association of UniProt Keywords with GO Terms. Automated Data Submission.
ZFIN Staff (2017) Curation of PANTHER Gene IDs. Automated Data Submission.
ZFIN Staff (2013) Curation of NCBI Gene Data Via Shared Vega Gene IDs. Automated Data Submission.
ZFIN Staff (2003) Curation of VEGA Database Links. Automated Data Submission.
ZFIN Staff (2024) Association of Ensembl transcripts with ZFIN genes. Semi-automated Curation.
ZFIN Staff (2013) Semi-automated association of ENSDARG identifiers with ZFIN genes for the ZMP project. Semi-automated Curation.
ZFIN Staff (2023) Curation of NCBI Gene Data Via Shared Ensembl IDs (Supplemental NCBI Load). Automated Data Submission.
ZFIN Staff (2002) Gene Ontology Annotation Through Association of InterPro Records with GO Terms. Automated Data Submission.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2023) Automated Curation of UniProt Database Links. Automated Data Submission.
ZFIN Staff (2020) Addition of links from ZFIN to Expression Atlas. Semi-automated Curation.
ZFIN Staff (2024) Association of Ensembl transcripts with ZFIN genes. Semi-automated Curation.
ZFIN Staff (2023) Curation of NCBI Gene Data Via Shared Ensembl IDs (Supplemental NCBI Load). Automated Data Submission.
ZFIN Staff (2023) Automated Curation of UniProt Database Links. Automated Data Submission.
ZFIN Staff (2020) Addition of links from ZFIN to Expression Atlas. Semi-automated Curation.
Zebrafish Nomenclature Committee (2019) Nomenclature Data Curation (2019). Nomenclature Committee Submission.
ZFIN Staff (2017) Curation of PANTHER Gene IDs. Automated Data Submission.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
Zebrafish Nomenclature Committee (2016) Nomenclature Data Curation (2016). Nomenclature Committee Submission.
ZFIN Staff (2013) Semi-automated association of ENSDARG identifiers with ZFIN genes for the ZMP project. Semi-automated Curation.
ZFIN Staff (2013) Curation of NCBI Gene Data Via Shared Vega Gene IDs. Automated Data Submission.
UniProt-GOA (2011) Gene Ontology annotation based on the automatic assignment of UniProtKB Subcellular Location terms in UniProtKB/TrEMBL entries. Manually curated data.
Gaudet, P., Livstone, M., Thomas, P., The Reference Genome Project (2010) Annotation inferences using phylogenetic trees. Automated Data Submission.
ZFIN Staff (2006) Curation of Ensembl Database Links. Automated Data Submission.
ZFIN Staff (2003) Curation of VEGA Database Links. Automated Data Submission.
ZFIN Staff (2003) Curation of orthology data. Manually curated data.
ZFIN Staff (2002) Gene Ontology Annotation Through Association of UniProt Keywords with GO Terms. Automated Data Submission.
ZFIN Staff (2002) Gene Ontology Annotation Through Association of InterPro Records with GO Terms. Automated Data Submission.
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