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ZFIN ID:
ZDB-GENE-011101-2
CITATIONS
(48 total)
Gene Name:
DCC netrin 1 receptor
Gene Symbol:
dcc
Bayés, À., Collins, M.O., Reig-Viader, R., Gou, G., Goulding, D., Izquierdo, A., Choudhary, J.S., Emes, R.D., Grant, S.G. (2017) Evolution of complexity in the zebrafish synapse proteome. Nature communications. 8:14613
Bonner, J., Letko, M., Nikolaus, O.B., Krug, L., Cooper, A., Chadwick, B., Conklin, P., Lim, A., Chien, C.B., and Dorsky, R.I. (2012) Midline crossing is not required for subsequent pathfinding decisions in commissural neurons. Neural Development. 7(1):18
Dang, P., Barnes, D.T., Cheng, R.P., Xu, A., Ji Moon, Y., Sripad Kodukula, S., Raper, J.A. (2022) Netrins and netrin receptors are essential for normal targeting of sensory axons in the zebrafish olfactory bulb. Neuroscience. 508:19-29
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
Fricke, C., and Chien, C.B. (2005) Cloning of full-length zebrafish dcc and expression analysis during embryonic and early larval development. Developmental Dynamics : an official publication of the American Association of Anatomists. 234(3):732-739
Gao, J., Zhang, C., Yang, B., Sun, L., Zhang, C., Westerfield, M., and Peng, G. (2012) Dcc Regulates Asymmetric Outgrowth of Forebrain Neurons in Zebrafish. PLoS One. 7(5):e36516
Gao, X., Metzger, U., Panza, P., Mahalwar, P., Alsheimer, S., Geiger, H., Maischein, H.M., Levesque, M.P., Templin, M., Söllner, C. (2015) A Floor-Plate Extracellular Protein-Protein Interaction Screen Identifies Draxin as a Secreted Netrin-1 Antagonist. Cell Reports. 12(4):694-708
Gaudin, A., Hofmeister, W., and Key, B. (2012) Chemoattractant axon guidance cues regulate de novo axon trajectories in the embryonic forebrain of zebrafish. Developmental Biology. 367(2):126-139
Granato, M., van Eeden, F.J., Schach, U., Trowe, T., Brand, M., Furutani-Seiki, M., Haffter, P., Hammerschmidt, M., Heisenberg, C.P., Jiang, Y.J., Kane, D.A., Kelsh, R.N., Mullins, M.C., Odenthal, J., and Nüsslein-Volhard, C. (1996) Genes controlling and mediating locomotion behavior of the zebrafish embryo and larva. Development (Cambridge, England). 123:399-413
Haffter, P., Granato, M., Brand, M., Mullins, M.C., Hammerschmidt, M., Kane, D.A., Odenthal, J., van Eeden, F.J., Jiang, Y.J., Heisenberg, C.P., Kelsh, R.N., Furutani-Seiki, M., Vogelsang, E., Beuchle, D., Schach, U., Fabian, C., and Nüsslein-Volhard, C. (1996) The identification of genes with unique and essential functions in the development of the zebrafish, Danio rerio. Development (Cambridge, England). 123:1-36
Hale, L.A., Fowler, D.K., and Eisen, J.S. (2011) Netrin Signaling Breaks the Equivalence between Two Identified Zebrafish Motoneurons Revealing a New Role of Intermediate Targets. PLoS One. 6(10):e25841
Hjorth, J.T., Gad, J., Cooper, H., and Key, B. (2001) A zebrafish homologue of deleted in colorectal cancer (zdcc) is expressed in the first neuronal clusters of the developing brain. Mechanisms of Development. 109(1):105-109
Jain, R.A., Bell, H., Lim, A., Chien, C.B., Granato, M. (2014) Mirror movement-like defects in startle behavior of zebrafish dcc mutants are caused by aberrant midline guidance of identified descending hindbrain neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 34:2898-909
Kastenhuber, E., Kern U., Bonkowsky, J.L., Chien, C.B., Driever, W., and Schweitzer, J. (2009) Netrin-DCC, Robo-Slit, and heparan sulfate proteoglycans coordinate lateral positioning of longitudinal dopaminergic diencephalospinal axons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 29(28):8914-8926
Kedra, M., Banasiak, K., Kisielewska, K., Wolinska-Niziol, L., Jaworski, J., Zmorzynska, J. (2020) TrkB hyperactivity contributes to brain dysconnectivity, epileptogenesis, and anxiety in zebrafish model of Tuberous Sclerosis Complex. Proceedings of the National Academy of Sciences of the United States of America. 117(4):2170-2179
Kikel-Coury, N.L., Green, L.A., Nichols, E.L., Zellmer, A.M., Pai, S., Hedlund, S.A., Marsden, K., Smith, C.J. (2021) Pioneer axons utilize a
dcc
signaling-mediated invasion brake to precisely complete their pathfinding odyssey. The Journal of neuroscience : the official journal of the Society for Neuroscience. 41(31):6617-6636
Lakhina, V., Marcaccio, C.L., Shao, X., Lush, M.E., Jain, R.A., Fujimoto, E., Bonkowsky, J.L., Granato, M., and Raper, J.A. (2012) Netrin/DCC Signaling Guides Olfactory Sensory Axons to Their Correct Location in the Olfactory Bulb. The Journal of neuroscience : the official journal of the Society for Neuroscience. 32(13):4440-4456
Lewis, K.E. and Eisen, J.S. (2003) From cells to circuits: development of the zebrafish spinal cord. Prog. Neurobiol.. 69(6):419-449
Lim, A.H., Suli, A., Yaniv, K., Weinstein, B., Li, D.Y., and Chien, C.B. (2011) Motoneurons are essential for vascular pathfinding. Development (Cambridge, England). 138(17):3847-3857
Manzoli, R., Badenetti, L., Bruzzone, M., Macario, M.C., Rubin, M., Dal Maschio, M., Roveri, A., Moro, E. (2024) Mucopolysaccharidosis type II zebrafish model exhibits early impaired proteasomal-mediated degradation of the axon guidance receptor Dcc. Cell Death & Disease. 15:269269
Miyasaka, N., Wanner, A.A., Li, J., Mack-Bucher, J., Genoud, C., Yoshihara, Y., and Friedrich, R.W. (2013) Functional development of the olfactory system in zebrafish. Mechanisms of Development. 130(6-8):336-46
Rosenberg, A.F., Isaacman-Beck, J., Franzini-Armstrong, C., Granato, M. (2014) Schwann cells and deleted in colorectal carcinoma direct regenerating motor axons towards their original path. The Journal of neuroscience : the official journal of the Society for Neuroscience. 34:14668-81
Schweitzer, J., Löhr, H., Bonkowsky, J.L., Hübscher, K., and Driever, W. (2013) Sim1a and Arnt2 contribute to hypothalamo-spinal axon guidance by regulating Robo2 activity via a Robo3-dependent mechanism. Development (Cambridge, England). 140(1):93-106
Shen, H., Illges, H., Reuter, A., and Stürmer, C. (2002) Cloning, expression, and alternative splicing of neogenin1 in zebrafish. Mechanisms of Development. 118(1-2):219-223
Suli, A., Mortimer, N., Shepherd, I., and Chien, C.B. (2006) Netrin/DCC signaling controls contralateral dendrites of octavolateralis efferent neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 26(51):13328-13337
Sun, S.D., Purdy, A.M., Walsh, G.S. (2016) Planar cell polarity genes Frizzled3a, Vangl2, and Scribble are required for spinal commissural axon guidance. BMC Neuroscience. 17:83
Taku, A.A., Marcaccio, C.L., Ye, W., Krause, G.J., Raper, J.A. (2016) Attractant and repellent cues cooperate in guiding a subset of olfactory sensory axons to a well-defined protoglomerular target. Development (Cambridge, England). 143:123-32
Zelina, P., Blockus, H., Zagar, Y., Péres, A., Friocourt, F., Wu, Z., Rama, N., Fouquet, C., Hohenester, E., Tessier-Lavigne, M., Schweitzer, J., Roest Crollius, H., Chédotal, A. (2014) Signaling switch of the axon guidance receptor Robo3 during vertebrate evolution. Neuron. 84:1258-72
Zhang, C., Gao, J., Zhang, H., Sun, L., and Peng, G. (2012) Robo2-Slit and Dcc-Netrin1 Coordinate Neuron Axonal Pathfinding within the Embryonic Axon Tracts. The Journal of neuroscience : the official journal of the Society for Neuroscience. 32(36):12589-12602
Manzoli, R., Badenetti, L., Bruzzone, M., Macario, M.C., Rubin, M., Dal Maschio, M., Roveri, A., Moro, E. (2024) Mucopolysaccharidosis type II zebrafish model exhibits early impaired proteasomal-mediated degradation of the axon guidance receptor Dcc. Cell Death & Disease. 15:269269
Dang, P., Barnes, D.T., Cheng, R.P., Xu, A., Ji Moon, Y., Sripad Kodukula, S., Raper, J.A. (2022) Netrins and netrin receptors are essential for normal targeting of sensory axons in the zebrafish olfactory bulb. Neuroscience. 508:19-29
Kikel-Coury, N.L., Green, L.A., Nichols, E.L., Zellmer, A.M., Pai, S., Hedlund, S.A., Marsden, K., Smith, C.J. (2021) Pioneer axons utilize a
dcc
signaling-mediated invasion brake to precisely complete their pathfinding odyssey. The Journal of neuroscience : the official journal of the Society for Neuroscience. 41(31):6617-6636
Kedra, M., Banasiak, K., Kisielewska, K., Wolinska-Niziol, L., Jaworski, J., Zmorzynska, J. (2020) TrkB hyperactivity contributes to brain dysconnectivity, epileptogenesis, and anxiety in zebrafish model of Tuberous Sclerosis Complex. Proceedings of the National Academy of Sciences of the United States of America. 117(4):2170-2179
Bayés, À., Collins, M.O., Reig-Viader, R., Gou, G., Goulding, D., Izquierdo, A., Choudhary, J.S., Emes, R.D., Grant, S.G. (2017) Evolution of complexity in the zebrafish synapse proteome. Nature communications. 8:14613
Sun, S.D., Purdy, A.M., Walsh, G.S. (2016) Planar cell polarity genes Frizzled3a, Vangl2, and Scribble are required for spinal commissural axon guidance. BMC Neuroscience. 17:83
Taku, A.A., Marcaccio, C.L., Ye, W., Krause, G.J., Raper, J.A. (2016) Attractant and repellent cues cooperate in guiding a subset of olfactory sensory axons to a well-defined protoglomerular target. Development (Cambridge, England). 143:123-32
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
Gao, X., Metzger, U., Panza, P., Mahalwar, P., Alsheimer, S., Geiger, H., Maischein, H.M., Levesque, M.P., Templin, M., Söllner, C. (2015) A Floor-Plate Extracellular Protein-Protein Interaction Screen Identifies Draxin as a Secreted Netrin-1 Antagonist. Cell Reports. 12(4):694-708
Jain, R.A., Bell, H., Lim, A., Chien, C.B., Granato, M. (2014) Mirror movement-like defects in startle behavior of zebrafish dcc mutants are caused by aberrant midline guidance of identified descending hindbrain neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 34:2898-909
Rosenberg, A.F., Isaacman-Beck, J., Franzini-Armstrong, C., Granato, M. (2014) Schwann cells and deleted in colorectal carcinoma direct regenerating motor axons towards their original path. The Journal of neuroscience : the official journal of the Society for Neuroscience. 34:14668-81
Zelina, P., Blockus, H., Zagar, Y., Péres, A., Friocourt, F., Wu, Z., Rama, N., Fouquet, C., Hohenester, E., Tessier-Lavigne, M., Schweitzer, J., Roest Crollius, H., Chédotal, A. (2014) Signaling switch of the axon guidance receptor Robo3 during vertebrate evolution. Neuron. 84:1258-72
Miyasaka, N., Wanner, A.A., Li, J., Mack-Bucher, J., Genoud, C., Yoshihara, Y., and Friedrich, R.W. (2013) Functional development of the olfactory system in zebrafish. Mechanisms of Development. 130(6-8):336-46
Schweitzer, J., Löhr, H., Bonkowsky, J.L., Hübscher, K., and Driever, W. (2013) Sim1a and Arnt2 contribute to hypothalamo-spinal axon guidance by regulating Robo2 activity via a Robo3-dependent mechanism. Development (Cambridge, England). 140(1):93-106
Bonner, J., Letko, M., Nikolaus, O.B., Krug, L., Cooper, A., Chadwick, B., Conklin, P., Lim, A., Chien, C.B., and Dorsky, R.I. (2012) Midline crossing is not required for subsequent pathfinding decisions in commissural neurons. Neural Development. 7(1):18
Gao, J., Zhang, C., Yang, B., Sun, L., Zhang, C., Westerfield, M., and Peng, G. (2012) Dcc Regulates Asymmetric Outgrowth of Forebrain Neurons in Zebrafish. PLoS One. 7(5):e36516
Gaudin, A., Hofmeister, W., and Key, B. (2012) Chemoattractant axon guidance cues regulate de novo axon trajectories in the embryonic forebrain of zebrafish. Developmental Biology. 367(2):126-139
Lakhina, V., Marcaccio, C.L., Shao, X., Lush, M.E., Jain, R.A., Fujimoto, E., Bonkowsky, J.L., Granato, M., and Raper, J.A. (2012) Netrin/DCC Signaling Guides Olfactory Sensory Axons to Their Correct Location in the Olfactory Bulb. The Journal of neuroscience : the official journal of the Society for Neuroscience. 32(13):4440-4456
Zhang, C., Gao, J., Zhang, H., Sun, L., and Peng, G. (2012) Robo2-Slit and Dcc-Netrin1 Coordinate Neuron Axonal Pathfinding within the Embryonic Axon Tracts. The Journal of neuroscience : the official journal of the Society for Neuroscience. 32(36):12589-12602
Hale, L.A., Fowler, D.K., and Eisen, J.S. (2011) Netrin Signaling Breaks the Equivalence between Two Identified Zebrafish Motoneurons Revealing a New Role of Intermediate Targets. PLoS One. 6(10):e25841
Lim, A.H., Suli, A., Yaniv, K., Weinstein, B., Li, D.Y., and Chien, C.B. (2011) Motoneurons are essential for vascular pathfinding. Development (Cambridge, England). 138(17):3847-3857
Kastenhuber, E., Kern U., Bonkowsky, J.L., Chien, C.B., Driever, W., and Schweitzer, J. (2009) Netrin-DCC, Robo-Slit, and heparan sulfate proteoglycans coordinate lateral positioning of longitudinal dopaminergic diencephalospinal axons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 29(28):8914-8926
Suli, A., Mortimer, N., Shepherd, I., and Chien, C.B. (2006) Netrin/DCC signaling controls contralateral dendrites of octavolateralis efferent neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 26(51):13328-13337
Fricke, C., and Chien, C.B. (2005) Cloning of full-length zebrafish dcc and expression analysis during embryonic and early larval development. Developmental Dynamics : an official publication of the American Association of Anatomists. 234(3):732-739
Lewis, K.E. and Eisen, J.S. (2003) From cells to circuits: development of the zebrafish spinal cord. Prog. Neurobiol.. 69(6):419-449
Shen, H., Illges, H., Reuter, A., and Stürmer, C. (2002) Cloning, expression, and alternative splicing of neogenin1 in zebrafish. Mechanisms of Development. 118(1-2):219-223
Hjorth, J.T., Gad, J., Cooper, H., and Key, B. (2001) A zebrafish homologue of deleted in colorectal cancer (zdcc) is expressed in the first neuronal clusters of the developing brain. Mechanisms of Development. 109(1):105-109
Granato, M., van Eeden, F.J., Schach, U., Trowe, T., Brand, M., Furutani-Seiki, M., Haffter, P., Hammerschmidt, M., Heisenberg, C.P., Jiang, Y.J., Kane, D.A., Kelsh, R.N., Mullins, M.C., Odenthal, J., and Nüsslein-Volhard, C. (1996) Genes controlling and mediating locomotion behavior of the zebrafish embryo and larva. Development (Cambridge, England). 123:399-413
Haffter, P., Granato, M., Brand, M., Mullins, M.C., Hammerschmidt, M., Kane, D.A., Odenthal, J., van Eeden, F.J., Jiang, Y.J., Heisenberg, C.P., Kelsh, R.N., Furutani-Seiki, M., Vogelsang, E., Beuchle, D., Schach, U., Fabian, C., and Nüsslein-Volhard, C. (1996) The identification of genes with unique and essential functions in the development of the zebrafish, Danio rerio. Development (Cambridge, England). 123:1-36
Additional Citations (19):
Busch-Nentwich, E., Kettleborough, R., Dooley, C. M., Scahill, C., Sealy, I., White, R., Herd, C., Mehroke, S., Wali, N., Carruthers, S., Hall, A., Collins, J., Gibbons, R., Pusztai, Z., Clark, R., and Stemple, D.L. (2013) Sanger Institute Zebrafish Mutation Project mutant data submission. ZFIN Direct Data Submission.
Gaudet, P., Livstone, M., Thomas, P., The Reference Genome Project (2010) Annotation inferences using phylogenetic trees. Automated Data Submission.
Geisler, R. (2013) Importation of Tübingen internal allele names. ZFIN Direct Data Submission.
Phenotype Annotation (1994-2006) (2006) Mutant Data Curated from Older Literature. ZFIN Historical Data.
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 (2022) Nomenclature Data Curation (2022). Nomenclature Committee Submission.
ZFIN Staff (2017) Manual curation of protein IDs. Manually curated data.
ZFIN Staff (2022) Electronic Gene Ontology annotations created by ARBA machine learning models. Automated Data Submission.
ZFIN Staff (2006) Curation of Ensembl Database Links. Automated Data Submission.
ZFIN Staff (2002) Scientific Curation. Manually curated data.
ZFIN Staff (2002) Curation of NCBI Gene Data Via Shared RNA Sequence IDs. Automated Data Submission.
ZFIN Staff (2002) Gene Ontology Annotation Through Association of UniProt Keywords with GO Terms. Automated Data Submission.
ZFIN Staff (2015) Data Model Change: Sequence Targeting Reagents Removed from Environment. ZFIN Historical Data.
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 (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) Automated Curation of UniProt Database Links. Automated Data Submission.
Zebrafish Nomenclature Committee (2022) Nomenclature Data Curation (2022). Nomenclature Committee Submission.
ZFIN Staff (2022) Electronic Gene Ontology annotations created by ARBA machine learning models. Automated Data Submission.
ZFIN Staff (2020) Addition of links from ZFIN to Expression Atlas. Semi-automated Curation.
ZFIN Staff (2017) Manual curation of protein IDs. Manually curated data.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2015) Data Model Change: Sequence Targeting Reagents Removed from Environment. ZFIN Historical Data.
Busch-Nentwich, E., Kettleborough, R., Dooley, C. M., Scahill, C., Sealy, I., White, R., Herd, C., Mehroke, S., Wali, N., Carruthers, S., Hall, A., Collins, J., Gibbons, R., Pusztai, Z., Clark, R., and Stemple, D.L. (2013) Sanger Institute Zebrafish Mutation Project mutant data submission. ZFIN Direct Data Submission.
Geisler, R. (2013) Importation of Tübingen internal allele names. ZFIN Direct Data Submission.
ZFIN Staff (2013) Semi-automated association of ENSDARG identifiers with ZFIN genes for the ZMP project. Semi-automated Curation.
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.
Phenotype Annotation (1994-2006) (2006) Mutant Data Curated from Older Literature. ZFIN Historical Data.
ZFIN Staff (2006) Curation of Ensembl Database Links. Automated Data Submission.
ZFIN Staff (2002) Gene Ontology Annotation Through Association of UniProt Keywords with GO Terms. Automated Data Submission.
ZFIN Staff (2002) Curation of NCBI Gene Data Via Shared RNA Sequence IDs. Automated Data Submission.
ZFIN Staff (2002) Scientific Curation. Manually curated data.
ZFIN Staff (2002) Gene Ontology Annotation Through Association of InterPro Records with GO Terms. Automated Data Submission.
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