product summary
company name :
Developmental Studies Hybridoma Bank
product type :
antibody
product name :
neurofilament-associated, Mauthner cells
catalog :
3A10
clonality :
monoclonal
host :
mouse
conjugate :
nonconjugated
clone name :
3A10
reactivity :
little skate, chicken, zebrafish , Xenopus laevis
application :
immunohistochemistry, immunocytochemistry, flow cytometry, immunohistochemistry - frozen section
citations: 79
Published Application/Species/Sample/DilutionReference
  • immunohistochemistry; Xenopus laevis; 1:50; loading ...; fig 1f
Kakebeen A, Chitsazan A, Williams M, Saunders L, WILLS A. Chromatin accessibility dynamics and single cell RNA-Seq reveal new regulators of regeneration in neural progenitors. elife. 2020;9: pubmed publisher
  • immunohistochemistry - frozen section; chicken; 1:250; loading ...; fig 2a
Scott M, Yue J, Biesemeier D, Lee J, Fekete D. Expression of class III Semaphorins and their receptors in the developing chicken (Gallus gallus) inner ear. J Comp Neurol. 2019;527:1196-1209 pubmed publisher
  • immunocytochemistry; Xenopus laevis; loading ...; fig s1e
Cagnetta R, Frese C, Shigeoka T, Krijgsveld J, Holt C. Rapid Cue-Specific Remodeling of the Nascent Axonal Proteome. Neuron. 2018;99:29-46.e4 pubmed publisher
  • immunohistochemistry - frozen section; little skate; fig s4d
Jung H, Baek M, D Elia K, Boisvert C, Currie P, Tay B, et al. The Ancient Origins of Neural Substrates for Land Walking. Cell. 2018;172:667-682.e15 pubmed publisher
  • immunohistochemistry - frozen section; chicken; 1:50; fig 4
Peretz Y, Eren N, Kohl A, Hen G, Yaniv K, Weisinger K, et al. A new role of hindbrain boundaries as pools of neural stem/progenitor cells regulated by Sox2. BMC Biol. 2016;14:57 pubmed publisher
  • immunocytochemistry; zebrafish ; 1:30
  • immunohistochemistry; zebrafish ; 1:30
Stil A, Drapeau P. Neuronal labeling patterns in the spinal cord of adult transgenic Zebrafish. Dev Neurobiol. 2016;76:642-60 pubmed publisher
Cardeña Núñez S, Sánchez Guardado L, Hidalgo Sanchez M. Cyp1B1 expression patterns in the developing chick inner ear. Dev Dyn. 2019;: pubmed publisher
Yang L, Zeng C, Zhang Y, Wang F, Takamiya M, Strahle U. Functions of thioredoxin1 in brain development and in response to environmental chemicals in zebrafish embryos. Toxicol Lett. 2019;314:43-52 pubmed publisher
Bai Z, Pu Q, Haque Z, Wang J, Huang R. The unique axon trajectory of the accessory nerve is determined by intrinsic properties of the neural tube in the avian embryo. Ann Anat. 2016;205:85-9 pubmed publisher
Moreno R, Ribera A. Spinal neurons require Islet1 for subtype-specific differentiation of electrical excitability. Neural Dev. 2014;9:19 pubmed publisher
Roy B, Ferdous J, Ali D. NMDA receptors on zebrafish Mauthner cells require CaMKII-? for normal development. Dev Neurobiol. 2015;75:145-62 pubmed publisher
Du J, Cao H, Zhou W, Chen K, Jiang D, Tang H, et al. MicroRNA-200 family members are weakly expressed in the neurosensory epithelia of the developing zebrafish (Danio rerio) inner ear. Genet Mol Res. 2014;13:4187-201 pubmed publisher
Stanic K, Vera A, Gonzalez M, Recabal A, Astuya A, Torrejon M, et al. Complementary expression of EphA7 and SCO-spondin during posterior commissure development. Front Neuroanat. 2014;8:49 pubmed publisher
Acosta J, Goldsbury C, Winnick C, Badrock A, Fraser S, Laird A, et al. Mutant human FUS Is ubiquitously mislocalized and generates persistent stress granules in primary cultured transgenic zebrafish cells. PLoS ONE. 2014;9:e90572 pubmed publisher
Zhao X, Kuja Panula J, Sundvik M, Chen Y, Aho V, Peltola M, et al. Amigo adhesion protein regulates development of neural circuits in zebrafish brain. J Biol Chem. 2014;289:19958-75 pubmed publisher
Weicksel S, Gupta A, Zannino D, Wolfe S, SAGERSTROM C. Targeted germ line disruptions reveal general and species-specific roles for paralog group 1 hox genes in zebrafish. BMC Dev Biol. 2014;14:25 pubmed publisher
Tahir R, Kennedy A, Elsea S, Dickinson A. Retinoic acid induced-1 (Rai1) regulates craniofacial and brain development in Xenopus. Mech Dev. 2014;133:91-104 pubmed publisher
Wu Fienberg Y, Moore A, Marquardt L, Newton P, Johnson P, Mackinnon S, et al. Viral transduction of primary Schwann cells using a Cre-lox system to regulate GDNF expression. Biotechnol Bioeng. 2014;111:1886-94 pubmed publisher
Liu F, Placzek M. Axon guidance effects of classical morphogens Shh and BMP7 in the hypothalamo-pituitary system. Neurosci Lett. 2014;562:108-13 pubmed
Zannino D, Downes G, SAGERSTROM C. prdm12b specifies the p1 progenitor domain and reveals a role for V1 interneurons in swim movements. Dev Biol. 2014;390:247-60 pubmed publisher
Mathews E, Mawdsley D, Walker M, Hines J, Pozzoli M, Appel B. Mutation of 3-hydroxy-3-methylglutaryl CoA synthase I reveals requirements for isoprenoid and cholesterol synthesis in oligodendrocyte migration arrest, axon wrapping, and myelin gene expression. J Neurosci. 2014;34:3402-12 pubmed publisher
Battisti A, Fantetti K, Moyers B, Fekete D. A subset of chicken statoacoustic ganglion neurites are repelled by Slit1 and Slit2. Hear Res. 2014;310:1-12 pubmed publisher
Tripathi V, Baskaran P, Shaw C, Guthrie S. Tar DNA-binding protein-43 (TDP-43) regulates axon growth in vitro and in vivo. Neurobiol Dis. 2014;65:25-34 pubmed publisher
Luxenhofer G, Helmbrecht M, Langhoff J, Giusti S, Refojo D, Huber A. MicroRNA-9 promotes the switch from early-born to late-born motor neuron populations by regulating Onecut transcription factor expression. Dev Biol. 2014;386:358-70 pubmed publisher
Watanabe T, Shimazaki T, Mishiro A, Suzuki T, Hirata H, Tanimoto M, et al. Coexpression of auxiliary Kv?2 subunits with Kv1.1 channels is required for developmental acquisition of unique firing properties of zebrafish Mauthner cells. J Neurophysiol. 2014;111:1153-64 pubmed publisher
Moly P, Ikenaga T, Kamihagi C, Islam A, Hatta K. Identification of initially appearing glycine-immunoreactive neurons in the embryonic zebrafish brain. Dev Neurobiol. 2014;74:616-32 pubmed publisher
Shim S, Zheng J, Ming G. A critical role for STIM1 in filopodial calcium entry and axon guidance. Mol Brain. 2013;6:51 pubmed publisher
Yin W, Hu B. Knockdown of Lingo1b protein promotes myelination and oligodendrocyte differentiation in zebrafish. Exp Neurol. 2014;251:72-83 pubmed publisher
Martínez Moreno C, Andres A, Giterman D, Karpinski E, Harvey S. Growth hormone and retinal ganglion cell function: QNR/D cells as an experimental model. Gen Comp Endocrinol. 2014;195:183-9 pubmed publisher
Higashiyama H, Kuratani S. On the maxillary nerve. J Morphol. 2014;275:17-38 pubmed publisher
Jacob J, Ribes V, Moore S, Constable S, Sasai N, Gerety S, et al. Valproic acid silencing of ascl1b/Ascl1 results in the failure of serotonergic differentiation in a zebrafish model of fetal valproate syndrome. Dis Model Mech. 2014;7:107-17 pubmed publisher
Schmeisser M, Kühl S, Schoen M, Beth N, Weis T, Grabrucker A, et al. The Nedd4-binding protein 3 (N4BP3) is crucial for axonal and dendritic branching in developing neurons. Neural Dev. 2013;8:18 pubmed publisher
Liu F, Placzek M, Xu H. Axon guidance effect of classical morphogens Shh and BMP7 in the hypothalamo-pituitary system. Neurosci Lett. 2013;553:104-9 pubmed publisher
Yang H, Lee D, Lee Y, Chi J, Lee J, Phi J, et al. Secondary neurulation of human embryos: morphological changes and the expression of neuronal antigens. Childs Nerv Syst. 2014;30:73-82 pubmed publisher
Kita E, Bertolesi G, Hehr C, Johnston J, McFarlane S. Neuropilin-1 biases dendrite polarization in the retina. Development. 2013;140:2933-41 pubmed publisher
Pu Q, Bai Z, Haque Z, Wang J, Huang R. Occipital somites guide motor axons of the accessory nerve in the avian embryo. Neuroscience. 2013;246:22-7 pubmed publisher
Williams R, Neubarth N, Hale M. The function of fin rays as proprioceptive sensors in fish. Nat Commun. 2013;4:1729 pubmed publisher
Kayam G, Kohl A, Magen Z, Peretz Y, Weisinger K, Bar A, et al. A novel role for Pax6 in the segmental organization of the hindbrain. Development. 2013;140:2190-202 pubmed publisher
Fleisch V, Leighton P, Wang H, Pillay L, Ritzel R, Bhinder G, et al. Targeted mutation of the gene encoding prion protein in zebrafish reveals a conserved role in neuron excitability. Neurobiol Dis. 2013;55:11-25 pubmed publisher
Chen Z, Lee H, Henle S, Cheever T, Ekker S, Henley J. Primary neuron culture for nerve growth and axon guidance studies in zebrafish (Danio rerio). PLoS ONE. 2013;8:e57539 pubmed publisher
Liu F, Pogoda H, Pearson C, Ohyama K, Löhr H, Hammerschmidt M, et al. Direct and indirect roles of Fgf3 and Fgf10 in innervation and vascularisation of the vertebrate hypothalamic neurohypophysis. Development. 2013;140:1111-22 pubmed publisher
Sainath R, Granato M. Plexin A3 and turnout regulate motor axonal branch morphogenesis in zebrafish. PLoS ONE. 2013;8:e54071 pubmed publisher
Yamanaka I, Miki M, Asakawa K, Kawakami K, Oda Y, Hirata H. Glycinergic transmission and postsynaptic activation of CaMKII are required for glycine receptor clustering in vivo. Genes Cells. 2013;18:211-24 pubmed publisher
Mack A, Tiedemann K. Cultures of astroglial cells derived from brain of adult cichlid fish. J Neurosci Methods. 2013;212:269-75 pubmed publisher
Cheng Y, Scotting P, Hsu L, Lin S, Shih H, Hsieh F, et al. Zebrafish rgs4 is essential for motility and axonogenesis mediated by Akt signaling. Cell Mol Life Sci. 2013;70:935-50 pubmed publisher
Boast S, Stern C. Simple methods for generating neural, bone and endodermal cell types from chick embryonic stem cells. Stem Cell Res. 2013;10:20-8 pubmed publisher
Song Y, Wang M, Mao F, Shao M, Zhao B, Song Z, et al. Knockdown of Pnpla6 protein results in motor neuron defects in zebrafish. Dis Model Mech. 2013;6:404-13 pubmed publisher
Sánchez Guardado L, Puelles L, Hidalgo Sanchez M. Fgf10 expression patterns in the developing chick inner ear. J Comp Neurol. 2013;521:1136-64 pubmed publisher
de Soysa T, Ulrich A, Friedrich T, Pite D, Compton S, Ok D, et al. Macondo crude oil from the Deepwater Horizon oil spill disrupts specific developmental processes during zebrafish embryogenesis. BMC Biol. 2012;10:40 pubmed publisher
Patten S, Jacobs McDaniels N, Zaouter C, Drapeau P, Albertson R, Moldovan F. Role of Chd7 in zebrafish: a model for CHARGE syndrome. PLoS ONE. 2012;7:e31650 pubmed publisher
Yoon B, Jung H, Dwivedy A, O Hare C, Zivraj K, Holt C. Local translation of extranuclear lamin B promotes axon maintenance. Cell. 2012;148:752-64 pubmed publisher
Dun X, Bandeira de Lima T, Allen J, Geraldo S, Gordon Weeks P, Chilton J. Drebrin controls neuronal migration through the formation and alignment of the leading process. Mol Cell Neurosci. 2012;49:341-50 pubmed publisher
Gerhart J, Scheinfeld V, Milito T, Pfautz J, Neely C, Fisher Vance D, et al. Myo/Nog cell regulation of bone morphogenetic protein signaling in the blastocyst is essential for normal morphogenesis and striated muscle lineage specification. Dev Biol. 2011;359:12-25 pubmed publisher
Almeida R, Czopka T, Ffrench Constant C, Lyons D. Individual axons regulate the myelinating potential of single oligodendrocytes in vivo. Development. 2011;138:4443-50 pubmed publisher
Magdesian M, Gralle M, Guerreiro L, Beltrão P, Carvalho M, Santos L, et al. Secreted human amyloid precursor protein binds semaphorin 3a and prevents semaphorin-induced growth cone collapse. PLoS ONE. 2011;6:e22857 pubmed publisher
Hashemi H, Hurley M, Gibson A, Panova V, Tchetchelnitski V, Barr A, et al. Receptor tyrosine phosphatase PTP? is a regulator of spinal cord neurogenesis. Mol Cell Neurosci. 2011;46:469-82 pubmed publisher
Song Y, Willer J, Scherer P, Panzer J, Kugath A, Skordalakes E, et al. Neural and synaptic defects in slytherin, a zebrafish model for human congenital disorders of glycosylation. PLoS ONE. 2010;5:e13743 pubmed publisher
Holley M, Rhodes C, Kneebone A, Herde M, Fleming M, Steel K. Emx2 and early hair cell development in the mouse inner ear. Dev Biol. 2010;340:547-56 pubmed publisher
Bingham S, Sittaramane V, Mapp O, Patil S, Prince V, Chandrasekhar A. Multiple mechanisms mediate motor neuron migration in the zebrafish hindbrain. Dev Neurobiol. 2010;70:87-99 pubmed publisher
Hill A, Heiden T, Heideman W, Peterson R. Potential roles of Arnt2 in zebrafish larval development. Zebrafish. 2009;6:79-91 pubmed publisher
Sánchez Guardado L, Ferran J, Mijares J, Puelles L, Rodríguez Gallardo L, Hidalgo Sanchez M. Raldh3 gene expression pattern in the developing chicken inner ear. J Comp Neurol. 2009;514:49-65 pubmed publisher
Cao X, Pfaff S, Gage F. YAP regulates neural progenitor cell number via the TEA domain transcription factor. Genes Dev. 2008;22:3320-34 pubmed publisher
Sittaramane V, Sawant A, Wolman M, Maves L, Halloran M, Chandrasekhar A. The cell adhesion molecule Tag1, transmembrane protein Stbm/Vangl2, and Lamininalpha1 exhibit genetic interactions during migration of facial branchiomotor neurons in zebrafish. Dev Biol. 2009;325:363-73 pubmed publisher
Gerhart J, Neely C, Elder J, Pfautz J, Perlman J, Narciso L, et al. Cells that express MyoD mRNA in the epiblast are stably committed to the skeletal muscle lineage. J Cell Biol. 2007;178:649-60 pubmed
Cao X, Pfaff S, Gage F. A functional study of miR-124 in the developing neural tube. Genes Dev. 2007;21:531-6 pubmed
Paulus J, Halloran M. Zebrafish bashful/laminin-alpha 1 mutants exhibit multiple axon guidance defects. Dev Dyn. 2006;235:213-24 pubmed
Kappler J, Starr C, Chan D, Kollmar R, Hudspeth A. A nonsense mutation in the gene encoding a zebrafish myosin VI isoform causes defects in hair-cell mechanotransduction. Proc Natl Acad Sci U S A. 2004;101:13056-61 pubmed
Miyashita T, Yeo S, Hirate Y, Segawa H, Wada H, Little M, et al. PlexinA4 is necessary as a downstream target of Islet2 to mediate Slit signaling for promotion of sensory axon branching. Development. 2004;131:3705-15 pubmed
Minarcik J, Golden J. AP-2 and HNK-1 define distinct populations of cranial neural crest cells. Orthod Craniofac Res. 2003;6:210-9 pubmed
Liu K, Gray M, Otto S, Fetcho J, Beattie C. Mutations in deadly seven/notch1a reveal developmental plasticity in the escape response circuit. J Neurosci. 2003;23:8159-66 pubmed
Lele Z, Folchert A, Concha M, Rauch G, Geisler R, Rosa F, et al. parachute/n-cadherin is required for morphogenesis and maintained integrity of the zebrafish neural tube. Development. 2002;129:3281-94 pubmed
Robb S, SANCHEZ ALVARADO A. Identification of immunological reagents for use in the study of freshwater planarians by means of whole-mount immunofluorescence and confocal microscopy. Genesis. 2002;32:293-8 pubmed
Phelps P, Alijani A, Tran T. Ventrally located commissural neurons express the GABAergic phenotype in developing rat spinal cord. J Comp Neurol. 1999;409:285-98 pubmed
Perez S, Rebelo S, Anderson D. Early specification of sensory neuron fate revealed by expression and function of neurogenins in the chick embryo. Development. 1999;126:1715-28 pubmed
Begum S, Komiyama M, Toyota N, Obinata T, Maruyama K, Shimada Y. Differentiation of muscle-specific proteins in chicken somites as studied by immunofluorescence microscopy. Cell Tissue Res. 1998;293:305-11 pubmed
Serafini T, Colamarino S, Leonardo E, Wang H, Beddington R, Skarnes W, et al. Netrin-1 is required for commissural axon guidance in the developing vertebrate nervous system. Cell. 1996;87:1001-14 pubmed
Dodd J, Jessell T. Axon guidance and the patterning of neuronal projections in vertebrates. Science. 1988;242:692-9 pubmed
Karagogeos D, Morton S, Casano F, Dodd J, Jessell T. Developmental expression of the axonal glycoprotein TAG-1: differential regulation by central and peripheral neurons in vitro. Development. 1991;112:51-67 pubmed
Storey K, Crossley J, De Robertis E, Norris W, Stern C. Neural induction and regionalisation in the chick embryo. Development. 1992;114:729-41 pubmed
company information
Developmental Studies Hybridoma Bank
University of Iowa
http://dshb.biology.uiowa.edu
headquarters: US