Anderson, K.R., Singer, R.A., Balderes, D.A., Hernandez-Lagunas, L., Johnson, C.W., Artinger, K.B., and Sussel, L. (2011) The L6 domain tetraspanin Tm4sf4 regulates endocrine pancreas differentiation and directed cell migration. Development (Cambridge, England). 138(15):3213-3224
|
|
Biemar, F., Argenton, F., Schmidtke, R., Epperlein, S., Peers, B., and Driever, W. (2001) Pancreas development in zebrafish: early dispersed appearance of endocrine hormone expressing cells and their convergence to form the definitive islet. Developmental Biology. 230(2):189-203
|
Binot, A.C., Manfroid, I., Flasse, L., Winandy, M., Motte, P., Martial, J.A., Peers, B., and Voz, M.L. (2010) Nkx6.1 and nkx6.2 regulate alpha- and beta-cell formation in zebrafish by acting on pancreatic endocrine progenitor cells. Developmental Biology. 340(2):397-407
|
Braasch, I., Gehrke, A.R., Smith, J.J., Kawasaki, K., Manousaki, T., Pasquier, J., Amores, A., Desvignes, T., Batzel, P., Catchen, J., Berlin, A.M., Campbell, M.S., Barrell, D., Martin, K.J., Mulley, J.F., Ravi, V., Lee, A.P., Nakamura, T., Chalopin, D., Fan, S., Wcisel, D., Cañestro, C., Sydes, J., Beaudry, F.E., Sun, Y., Hertel, J., Beam, M.J., Fasold, M., Ishiyama, M., Johnson, J., Kehr, S., Lara, M., Letaw, J.H., Litman, G.W., Litman, R.T., Mikami, M., Ota, T., Saha, N.R., Williams, L., Stadler, P.F., Wang, H., Taylor, J.S., Fontenot, Q., Ferrara, A., Searle, S.M., Aken, B., Yandell, M., Schneider, I., Yoder, J.A., Volff, J.N., Meyer, A., Amemiya, C.T., Venkatesh, B., Holland, P.W., Guiguen, Y., Bobe, J., Shubin, N.H., Di Palma, F., Alföldi, J., Lindblad-Toh, K., Postlethwait, J.H. (2016) The spotted gar genome illuminates vertebrate evolution and facilitates human-teleost comparisons. Nature Genetics. 48(4):427-37
|
Brown, S.E., Sant, K.E., Fleischman, S.M., Venezia, O., Roy, M.A., Zhao, L., Timme-Laragy, A.R. (2018) Pancreatic beta cells are a sensitive target of embryonic exposure to butylparaben in zebrafish (Danio rerio). Birth defects research. 110(11):933-948
|
Cahill, T., da Silveira, W.A., Renaud, L., Williamson, T., Wang, H., Chung, D., Overton, I., Chan, S.S.L., Hardiman, G. (2021) Induced Torpor as a Countermeasure for Low Dose Radiation Exposure in a Zebrafish Model. Cells. 10(4):
|
|
Chen, S., Huang, J., Yuan, G., Chen, Q., Huang, N., and Xie, F. (2007) siRNA specific to Pdx-1 disturbed the formation of the islet in early zebrafish embryos. Journal of Huazhong University of Science and Technology. Medical sciences = Hua zhong ke ji da xue xue bao. Yi xue Ying De wen ban = Huazhong keji daxue xuebao. Yixue Yingdewen ban. 27(6):639-642
|
|
Chow, B.K., Moon, T.W., Hoo, R.L., Yeung, C.M., Muller, M., Christos, P.J., and Mojsov, S. (2004) Identification and Characterization of a Glucagon Receptor from the Goldfish Carassius auratus: Implications for the Evolution of the Ligand Specificity of Glucagon Receptors in Vertebrates. Endocrinology. 145(7):3273-3288
|
|
|
Dalgin, G., Ward, A.B., Hao le, T., Beattie, C.E., Nechiporuk, A., and Prince, V.E. (2011) Zebrafish mnx1 controls cell fate choice in the developing endocrine pancreas. Development (Cambridge, England). 138(21):4597-4608
|
Delgadillo-Silva, L.F., Tsakmaki, A., Akhtar, N., Franklin, Z.J., Konantz, J., Bewick, G.A., Ninov, N. (2019) Modelling pancreatic β-cell inflammation in zebrafish identifies the natural product wedelolactone for human islet protection. Disease models & mechanisms. 12(1):
|
Delporte, F.M., Pasque, V., Devos, N., Manfroid, I., Voz, M.L., Motte, P., Biemar, F., Martial, J.A., and Peers, B. (2008) Expression of zebrafish pax6b in pancreas is regulated by two enhancers containing highly conserved cis-elements bound by PDX1, PBX and PREP factors. BMC Developmental Biology. 8:53
|
|
Djiotsa, J., Verbruggen, V., Giacomotto, J., Ishibashi, M., Manning, E., Rinkwitz, S., Manfroid, I., Lvoz, M., and Peers, B. (2012) Pax4 is not essential for beta-cell differentiation in zebrafish embryos but modulates alpha-cell generation by repressing arx gene expression. BMC Developmental Biology. 12(1):37
|
Dong, G., Huang, Y., Ding, H., Luo, L., Zhang, Y., Huang, H., Ruan, H. (2019) Mypt1 regulates Bmp signaling to promote embryonic exocrine pancreas growth in zebrafish. Genesis (New York, N.Y. : 2000). 58(2):e23345
|
Du, Q., Shao, R., Wang, W., Zhang, H., Liao, X., Wang, Z., Yin, Z., Ai, Q., Mai, K., Tang, X., Wan, M. (2024) Vitamin D3 Regulates Energy Homeostasis under Short-Term Fasting Condition in Zebrafish (Danio Rerio). Nutrients. 16(9):
|
Dupret, B., Völkel, P., Vennin, C., Toillon, R.A., Le Bourhis, X., Angrand, P.O. (2017) The histone lysine methyltransferase Ezh2 is required for maintenance of the intestine integrity and for caudal fin regeneration in zebrafish. Biochimica et biophysica acta. 1860(10):1079-1093
|
Elkon, R., Milon, B., Morrison, L., Shah, M., Vijayakumar, S., Racherla, M., Leitch, C.C., Silipino, L., Hadi, S., Weiss-Gayet, M., Barras, E., Schmid, C.D., Ait-Lounis, A., Barnes, A., Song, Y., Eisenman, D.J., Eliyahu, E., Frolenkov, G.I., Strome, S.E., Durand, B., Zaghloul, N.A., Jones, S.M., Reith, W., Hertzano, R. (2015) RFX transcription factors are essential for hearing in mice. Nature communications. 6:8549
|
Ellertsdottir, E., Ganz, J., Durr, K., Loges, N., Biemar, F., Seifert, F., Ettl, A.K., Kramer-Zucker, A.K., Nitschke, R., and Driever, W. (2006) A mutation in the zebrafish Na,K-ATPase subunit atp1a1a.1 provides genetic evidence that the sodium potassium pump contributes to left-right asymmetry downstream or in parallel to nodal flow. Developmental Dynamics : an official publication of the American Association of Anatomists. 235(7):1794-1808
|
Falcinelli, S., Rodiles, A., Hatef, A., Picchietti, S., Cossignani, L., Merrifield, D.L., Unniappan, S., Carnevali, O. (2017) Dietary lipid content reorganizes gut microbiota and probiotic L. rhamnosus attenuates obesity and enhances catabolic hormonal milieu in zebrafish. Scientific Reports. 7:5512
|
Falcinelli, S., Rodiles, A., Unniappan, S., Picchietti, S., Gioacchini, G., Merrifield, D.L., Carnevali, O. (2016) Probiotic treatment reduces appetite and glucose level in the zebrafish model. Scientific Reports. 6:18061
|
Fang, Y., Wan, J.P., Zhang, R.J., Sun, F., Yang, L., Zhao, S.X., Dong, M., Song, H.D. (2022) Tpo knockout in zebrafish partially recapitulates clinical manifestations of congenital hypothyroidism and reveals the involvement of TH in proper development of glucose homeostasis. General and comparative endocrinology. 323-324:114033
|
Flasse, L., Stern, D.G., Pirson, J.L., Manfroid, I., Peers, B., and Voz, M.L. (2013) The bHLH transcription factor Ascl1a is essential for the specification of the intestinal secretory cells and mediates Notch signaling in the zebrafish intestine. Developmental Biology. 376(2):187-197
|
Flasse, L.C., Pirson, J.L., Stern, D.G., Von Berg, V., Manfroid, I., Peers, B., and Voz, M.L. (2013) Ascl1b and Neurod1, instead of Neurog3, control pancreatic endocrine cell fate in zebrafish. BMC Biology. 11(1):78
|
|
Gong, Y., Yang, B., Zhang, D., Zhang, Y., Tang, Z., Yang, L., Coate, K.C., Yin, L., Covington, B.A., Patel, R.S., Siv, W.A., Sellick, K., Shou, M., Chang, W., Danielle Dean, E., Powers, A.C., Chen, W. (2023) Hyperaminoacidemia induces pancreatic α cell proliferation via synergism between the mTORC1 and CaSR-Gq signaling pathways. Nature communications. 14:235235
|
|
|
Jacobs, H.M., Sant, K.E., Basnet, A., Williams, L.M., Moss, J.B., Timme-Laragy, A.R. (2017) Embryonic exposure to Mono(2-ethylhexyl) phthalate (MEHP) disrupts pancreatic organogenesis in zebrafish (Danio rerio). Chemosphere. 195:498-507
|
Kalousova, A., Mavropoulos, A., Adams, B.A., Nekrep, N., Li, Z., Krauss, S., Stainier, D.Y., and German, M.S. (2010) Dachshund homologues play a conserved role in islet cell development. Developmental Biology. 348(2):143-152
|
Kang, Q., Jia, J., Dean, E.D., Yuan, H., Dai, C., Li, Z., Jiang, F., Zhang, X.K., Powers, A.C., Chen, W., Li, M. (2024) ErbB3 is required for hyperaminoacidemia-induced pancreatic α cell hyperplasia. The Journal of biological chemistry. 300(8):107499
|
Kang, Q., Zheng, J., Jia, J., Xu, Y., Bai, X., Chen, X., Zhang, X.K., Wong, F.S., Zhang, C., Li, M. (2022) Disruption of the glucagon receptor increases glucagon expression beyond α-cell hyperplasia in zebrafish. The Journal of biological chemistry. 298(12):102665
|
Kim, H.J., Schleiffarth, J.R., Jessurun, J., Sumanas, S., Petryk, A., Lin, S., and Ekker, S.C. (2005) Wnt5 signaling in vertebrate pancreas development. BMC Biology. 3:23
|
Kim, H.J., Sumanas, S., Palencia-Desai, S., Dong, Y., Chen, J.N., and Lin, S. (2006) Genetic analysis of early endocrine pancreas formation in zebrafish. Molecular endocrinology (Baltimore, Md.). 20(1):194-203
|
|
Kinkel, M.D., Sefton, E.M., Kikuchi, Y., Mizoguchi, T., Ward, A.B., and Prince, V.E. (2009) Cyp26 enzymes function in endoderm to regulate pancreatic field size. Proceedings of the National Academy of Sciences of the United States of America. 106(19):7864-7869
|
|
Lavergne, A., Tarifeño-Saldivia, E., Pirson, J., Reuter, A.S., Flasse, L., Manfroid, I., Voz, M.L., Peers, B. (2020) Pancreatic and intestinal endocrine cells in zebrafish share common transcriptomic signatures and regulatory programmes. BMC Biology. 18:109
|
Li, M., Dean, E.D., Zhao, L., Nicholson, W.E., Powers, A.C., Chen, W. (2015) Glucagon receptor inactivation leads to α-cell hyperplasia in zebrafish. The Journal of endocrinology. 227:93-103
|
|
|
|
|
|
Lu, C.J., Fan, X.Y., Guo, Y.F., Cheng, Z.C., Dong, J., Chen, J.Z., Li, L.Y., Wang, M.W., Wu, Z.K., Wang, F., Tong, X.J., Luo, L.F., Tang, F.C., Zhu, Z.Y., Zhang, B. (2018) Single-cell analyses identify distinct and intermediate states of zebrafish pancreatic islet development. Journal of molecular cell biology. 11(6):435-447
|
Ma, J., Shao, X., Geng, F., Liang, S., Yu, C., Zhang, R. (2022) Ercc2/Xpd deficiency results in failure of digestive organ growth in zebrafish with elevated nucleolar stress. iScience. 25:104957
|
|
Mavropoulos, A., Devos, N., Biemar, F., Zecchin, E., Argenton, F., Edlund, H., Motte, P., Martial, J.A., and Peers, B. (2005) sox4b is a key player of pancreatic alpha cell differentiation in zebrafish. Developmental Biology. 285(1):211-223
|
|
|
|
|
|
|
Musson, M.C., Jepeal, L.I., Mabray, P.D., Zhdanova, I.V., Cardoso, W.V., and Wolfe, M.M. (2009) Expression of Glucose-Dependent-Insulinotropic Polypeptide (GIP) in the Zebrafish. American journal of physiology. Regulatory, integrative and comparative physiology. 297(6):R1803-R1812
|
|
Oren, D.A., Wei, Y., Skrabanek, L., Chow, B.K., Mommsen, T., Mojsov, S. (2016) Structural Mapping and Functional Characterization of Zebrafish Class B G-Protein Coupled Receptor (GPCR) with Dual Ligand Selectivity towards GLP-1 and Glucagon. PLoS One. 11:e0167718
|
Park, C.R., Moon, M.J., Park, S., Kim, D.K., Cho, E.B., Millar, R.P., Hwang, J.I., and Seong, J.Y. (2013) A Novel Glucagon-Related Peptide (GCRP) and Its Receptor GCRPR Account for Coevolution of Their Family Members in Vertebrates. PLoS One. 8(6):e65420
|
|
|
Pourghadamyari, H., Rezaei, M., Basiri, M., Tahamtani, Y., Asgari, B., Hassani, S.N., Meshkani, R., Golmohammadi, T., Baharvand, H. (2019) Generation of a Transgenic Zebrafish Model for Pancreatic Beta Cell Regeneration. Galen Medical Journal. 8:e1056
|
Qin, W., Chen, Z., Zhang, Y., Yan, R., Yan, G., Li, S., Zhong, H., Lin, S. (2014) Nom1 Mediates Pancreas Development by Regulating Ribosome Biogenesis in Zebrafish. PLoS One. 9:e100796
|
Ragvin, A., Moro, E., Fredman, D., Navratilova, P., Drivenes, O., Engström, P.G., Alonso, M.E., Mustienes, E.D., Gomez Skarmeta, J.L., Tavares, M.J., Casares, F., Manzanares, M., van Heyningen, V., Molven, A., Njølstad, P.R., Argenton, F., Lenhard, B., and Becker, T.S. (2010) Long-range gene regulation links genomic type 2 diabetes and obesity risk regions to HHEX, SOX4, and IRX3. Proceedings of the National Academy of Sciences of the United States of America. 107(2):775-780
|
Reuter, A.S., Stern, D., Bernard, A., Goossens, C., Lavergne, A., Flasse, L., Von Berg, V., Manfroid, I., Peers, B., Voz, M.L. (2022) Identification of an evolutionarily conserved domain in Neurod1 favouring enteroendocrine versus goblet cell fate. PLoS Genetics. 18:e1010109
|
Sant, K.E., Jacobs, H.M., Borofski, K.A., Moss, J.B., Timme-Laragy, A.R. (2017) Embryonic exposures to perfluorooctanesulfonic acid (PFOS) disrupt pancreatic organogenesis in the zebrafish, Danio rerio. Environmental pollution (Barking, Essex : 1987). 220(Pt B):807-817
|
Shi, C., Lu, Y., Zhai, G., Huang, J., Shang, G., Lou, Q., Li, D., Jin, X., He, J., Du, Z., Gui, J., Yin, Z. (2019) Hyperandrogenism in POMCa-deficient zebrafish enhances somatic growth without increasing adiposity. Journal of molecular cell biology. 12(4):291-304
|
Soyer, J., Flasse, L., Raffelsberger, W., Beucher, A., Orvain, C., Peers, B., Ravassard, P., Vermot, J., Voz, M.L., Mellitzer, G., and Gradwohl, G. (2010) Rfx6 is an Ngn3-dependent winged helix transcription factor required for pancreatic islet cell development. Development (Cambridge, England). 137(2):203-212
|
|
Stetsyuk, V., Peers, B., Mavropoulos, A., Verbruggen, V., Thisse, B., Thisse, C., Motte, P., Duvillie, B., and Scharfmann, R. (2007) Calsenilin is required for endocrine pancreas development in zebrafish. Developmental Dynamics : an official publication of the American Association of Anatomists. 236(6):1517-1525
|
Strausberg,R.L., Feingold,E.A., Grouse,L.H., Derge,J.G., Klausner,R.D., Collins,F.S., Wagner,L., Shenmen,C.M., Schuler,G.D., Altschul,S.F., Zeeberg,B., Buetow,K.H., Schaefer,C.F., Bhat,N.K., Hopkins,R.F., Jordan,H., Moore,T., Max,S.I., Wang,J., Hsieh,F., Diatchenko,L., Marusina,K., Farmer,A.A., Rubin,G.M., Hong,L., Stapleton,M., Soares,M.B., Bonaldo,M.F., Casavant,T.L., Scheetz,T.E., Brownstein,M.J., Usdin,T.B., Toshiyuki,S., Carninci,P., Prange,C., Raha,S.S., Loquellano,N.A., Peters,G.J., Abramson,R.D., Mullahy,S.J., Bosak,S.A., McEwan,P.J., McKernan,K.J., Malek,J.A., Gunaratne,P.H., Richards,S., Worley,K.C., Hale,S., Garcia,A.M., Gay,L.J., Hulyk,S.W., Villalon,D.K., Muzny,D.M., Sodergren,E.J., Lu,X., Gibbs,R.A., Fahey,J., Helton,E., Ketteman,M., Madan,A., Rodrigues,S., Sanchez,A., Whiting,M., Madan,A., Young,A.C., Shevchenko,Y., Bouffard,G.G., Blakesley,R.W., Touchman,J.W., Green,E.D., Dickson,M.C., Rodriguez,A.C., Grimwood,J., Schmutz,J., Myers,R.M., Butterfield,Y.S., Krzywinski,M.I., Skalska,U., Smailus,D.E., Schnerch,A., Schein,J.E., Jones,S.J., and Marra,M.A. (2002) Generation and initial analysis of more than 15,000 full-length human and mouse cDNA sequences. Proceedings of the National Academy of Sciences of the United States of America. 99(26):16899-903
|
Takada, N., Omae, M., Sagawa, F., Chi, N.C., Endo, S., Kozawa, S., Sato, T.N. (2017) Re-evaluating functional landscape of the cardiovascular system during development. Biology Open. 6(11):1756-1770
|
Tarifeño-Saldivia, E., Lavergne, A., Bernard, A., Padamata, K., Bergemann, D., Voz, M.L., Manfroid, I., Peers, B. (2017) Transcriptome analysis of pancreatic cells across distant species highlights novel important regulator genes. BMC Biology. 15:21
|
|
Vaccari, E., Deflorian, G., Bernardi, E., Pauls, S., Tiso, N., Bortolussi, M., and Argenton, F. (2010) prep1.2 and aldh1a2 participate to a positive loop required for branchial arches development in zebrafish. Developmental Biology. 343(1-2):94-103
|
Veneman, W.J., de Sonneville, J., van der Kolk, K.J., Ordas, A., Al-Ars, Z., Meijer, A.H., Spaink, H.P. (2015) Analysis of RNAseq datasets from a comparative infectious disease zebrafish model using GeneTiles bioinformatics. Immunogenetics. 67(3):135-47
|
Venezia, O., Islam, S., Cho, C., Timme-Laragy, A.R., Sant, K.E. (2021) Modulation of PPAR signaling disrupts pancreas development in the zebrafish, Danio rerio. Toxicology and applied pharmacology. 426:115653
|
Verbruggen, V., Ek, O., Georlette, D., Delporte, F., Von Berg, V., Detry, N., Biemar, F., Coutinho, P., Martial, J.A., Voz, M.L., Manfroid, I., and Peers, B. (2010) The Pax6b homeodomain is dispensable for pancreatic endocrine cell differentiation in zebrafish. The Journal of biological chemistry. 285(18):13863-13873
|
Waldron, A.L., Schroder, P.A., Bourgon, K.L., Bolduc, J.K., Miller, J.L., Pellegrini, A.D., Dubois, A.L., Blaszkiewicz, M., Townsend, K.L., Rieger, S. (2017) Oxidative stress-dependent MMP-13 activity underlies glucose neurotoxicity. Journal of diabetes and its complications. 32(3):249-257
|
Wan, H., Korzh, S., Li, Z., Mudumana, S.P., Korzh, V., Jiang, Y.J., Lin, S., and Gong, Z. (2006) Analyses of pancreas development by generation of gfp transgenic zebrafish using an exocrine pancreas-specific elastaseA gene promoter. Experimental cell research. 312(9):1526-1539
|
Wang, J., Li, Y., Lai, K., Zhong, Q., Demin, K.A., Kalueff, A.V., Song, C. (2019) High-glucose/high-cholesterol diet in zebrafish evokes diabetic and affective pathogenesis: The role of peripheral and central inflammation, microglia and apoptosis. Progress in neuro-psychopharmacology & biological psychiatry. 96:109752
|
Wang, L., Ma, J., Wu, W., Fang, Y., Liu, F., Yang, Q., Hu, X., Gu, X., He, Z., Sun, D., Jin, L., Zhang, X. (2022) Effect of aerobic exercise as a treatment on type 2 diabetes mellitus with depression-like behavior zebrafish. Life sciences. 300:120578
|
Wang, X., Yang, X.L., Liu, K.C., Sheng, W.L., Xia, Q., Wang, R.C., Chen, X.Q., Zhang, Y. (2020) Effects of streptozotocin on pancreatic islet β-cell apoptosis and glucose metabolism in zebrafish larvae. Fish physiology and biochemistry. 46(3):1025-1038
|
|
|
|
Wyett, G., Gibert, Y., Ellis, M., Castillo, H.A., Kaslin, J., Aston-Mourney, K. (2017) Metformin, beta-cell development, and novel processes following beta-cell ablation in zebrafish. Endocrine. 59(2):419-425
|
Xu, Y., Zhang, S., Bao, Y., Luan, J., Fu, Z., Sun, M., Zhao, X., Feng, X. (2024) Melatonin protects zebrafish pancreatic development and physiological rhythms from sodium propionate-induced disturbances via the hypothalamic-pituitary-thyroid axis. Journal of the science of food and agriculture. 104(12):7454-7463
|
Yang, L., Webb, S.E., Jin, N., Lee, H.M., Chan, T.F., Xu, G., Chan, J.C.N., Miller, A.L., Ma, R.C.W. (2021) Investigating the role of dachshund b in the development of the pancreatic islet in zebrafish. Journal of diabetes investigation. 12(5):710-727
|
Ye, L., Mueller, O., Bagwell, J., Bagnat, M., Liddle, R.A., Rawls, J.F. (2019) High fat diet induces microbiota-dependent silencing of enteroendocrine cells. eLIFE. 8:
|
Ye, L., Robertson, M.A., Hesselson, D., Stainier, D.Y., Anderson, R.M. (2015) glucagon is essential for alpha cell transdifferentiation and beta cell neogenesis. Development (Cambridge, England). 142:1407-17
|
|
Zecchin, E., Filippi, A., Biemar, F., Tiso, N., Pauls, S., Ellertsdottir, E., Gnugge, L., Bortolussi, M., Driever, W., and Argenton, F. (2007) Distinct delta and jagged genes control sequential segregation of pancreatic cell types from precursor pools in zebrafish. Developmental Biology. 301(1):192-204
|
Zecchin, E., Mavropoulos, A., Devos, N., Filippi, A., Tiso, N., Meyer, D., Peers, B., Bortolussi, M., Argenton, F. (2004) Evolutionary conserved role of ptf1a in the specification of exocrine pancreatic fates. Developmental Biology. 268(1):174-184
|
Zhang, C., Huang, R., Ma, X., Chen, J., Han, X., Li, L., Luo, L., Ruan, H., Huang, H. (2021) The Ribosome Biogenesis Factor Ltv1 Is Essential for Digestive Organ Development and Definitive Hematopoiesis in Zebrafish. Frontiers in cell and developmental biology. 9:704730
|
|
Zhao, F., Wang, H., Wei, P., Jiang, G., Wang, W., Zhang, X., Ru, S. (2018) Impairment of bisphenol F on the glucose metabolism of zebrafish larvae. Ecotoxicology and environmental safety. 165:386-392
|
|