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ZFIN ID:
ZDB-ATB-111104-1
CITATIONS
(41 total)
Antibody Name:
Ab1-mbp
Boueid, M.J., Mikdache, A., Lesport, E., Delespierre, B., Loisel-Duwattez, J., Degerny, C., Tawk, M. (2022) Pals1a and aPKCλ are not essential for Schwann cell migration, division or myelination in zebrafish. Developmental Dynamics : an official publication of the American Association of Anatomists. 252(1):145-155
Green, L.A., Gallant, R.M., Brandt, J.P., Nichols, E.L., Smith, C.J. (2022) A Subset of Oligodendrocyte Lineage Cells Interact With the Developing Dorsal Root Entry Zone During Its Genesis. Frontiers in Cellular Neuroscience. 16:893629
Kikel-Coury, N.L., Brandt, J.P., Correia, I.A., O'Dea, M.R., DeSantis, D.F., Sterling, F., Vaughan, K., Ozcebe, G., Zorlutuna, P., Smith, C.J. (2021) Identification of astroglia-like cardiac nexus glia that are critical regulators of cardiac development and function. PLoS Biology. 19:e3001444
Blanco-Sánchez, B., Clément, A., Stednitz, S.J., Kyle, J., Peirce, J.L., McFadden, M., Wegner, J., Phillips, J.B., Macnamara, E., Huang, Y., Adams, D.R., Toro, C., Gahl, W.A., Malicdan, M.C.V., Tifft, C.J., Zink, E.M., Bloodsworth, K.J., Stratton, K.G., Undiagnosed Diseases Network, Koeller, D.M., Metz, T.O., Washbourne, P., Westerfield, M. (2020) yippee like 3 (ypel3) is a novel gene required for myelinating and perineurial glia development. PLoS Genetics. 16:e1008841
Hughes, A.N., Appel, B. (2020) Microglia phagocytose myelin sheaths to modify developmental myelination. Nature Neuroscience. 23(9):1055-1066
Schwarzer, S., Asokan, N., Bludau, O., Kuscha, V., Kaslin, J., Hans, S. (2020) Neurogenesis in the inner ear: the zebrafish statoacoustic ganglion provides new neurons from a Neurod/Nestin-positive progenitor pool well into adulthood. Development (Cambridge, England). 147(7):
Doll, C.A., Yergert, K.M., Appel, B.H. (2019) The RNA binding protein fragile X mental retardation protein promotes myelin sheath growth. Glia. 68(3):495-508
Fontenas, L., Welsh, T.G., Piller, M., Coughenour, P., Gandhi, A.V., Prober, D.A., Kucenas, S. (2019) The Neuromodulator Adenosine Regulates Oligodendrocyte Migration at Motor Exit Point Transition Zones. Cell Reports. 27:115-128.e5
Meireles, A.M., Shen, K., Zoupi, L., Iyer, H., Bouchard, E.L., Williams, A., Talbot, W.S. (2018) The Lysosomal Transcription Factor TFEB Represses Myelination Downstream of the Rag-Ragulator Complex. Developmental Cell. 47:319-330.e5
Yang, L.Q., Chen, M., Zhang, J.L., Ren, D.L., Hu, B. (2018) Hypoxia Delays Oligodendrocyte Progenitor Cell Migration and Myelin Formation by Suppressing Bmp2b Signaling in Larval Zebrafish. Frontiers in Cellular Neuroscience. 12:348
Kroehne, V., Tsata, V., Marrone, L., Froeb, C., Reinhardt, S., Gompf, A., Dahl, A., Sterneckert, J., Reimer, M.M. (2017) Primary Spinal OPC Culture System from Adult Zebrafish to Study Oligodendrocyte Differentiation
In Vitro
.. Frontiers in Cellular Neuroscience. 11:284
Pinzon-Olejua, A., Welte, C., Chekuru, A., Bosak, V., Brand, M., Hans, S., Stuermer, C.A. (2017) Cre inducible site-specific recombination in zebrafish oligodendrocytes. Developmental Dynamics : an official publication of the American Association of Anatomists. 246(1):41-49
Tingaud-Sequeira, A., Raldúa, D., Lavie, J., Mathieu, G., Bordier, M., Knoll-Gellida, A., Rambeau, P., Coupry, I., André, M., Malm, E., Möller, C., Andreasson, S., Rendtorff, N.D., Tranebjærg, L., Koenig, M., Lacombe, D., Goizet, C., Babin, P.J. (2017) Functional validation of ABHD12 mutations in the neurodegenerative disease PHARC. Neurobiology of disease. 98:36-51
Küffer, A., Lakkaraju, A.K., Mogha, A., Petersen, S.C., Airich, K., Doucerain, C., Marpakwar, R., Bakirci, P., Senatore, A., Monnard, A., Schiavi, C., Nuvolone, M., Grosshans, B., Hornemann, S., Bassilana, F., Monk, K.R., Aguzzi, A. (2016) The prion protein is an agonistic ligand of the G protein-coupled receptor Adgrg6. Nature. 536(7617):464-8
Zhang, J., Lachance, V., Schaffner, A., Li, X., Fedick, A., Kaye, L.E., Liao, J., Rosenfeld, J., Yachelevich, N., Chu, M.L., Mitchell, W.G., Boles, R.G., Moran, E., Tokita, M., Gorman, E., Bagley, K., Zhang, W., Xia, F., Leduc, M., Yang, Y., Eng, C., Wong, L.J., Schiffmann, R., Diaz, G.A., Kornreich, R., Thummel, R., Wasserstein, M., Yue, Z., Edelmann, L. (2016) A Founder Mutation in VPS11 Causes an Autosomal Recessive Leukoencephalopathy Linked to Autophagic Defects. PLoS Genetics. 12:e1005848
Hines, J.H., Ravanelli, A.M., Schwindt, R., Scott, E.K., Appel, B. (2015) Neuronal activity biases axon selection for myelination in vivo. Nature Neuroscience. 18(5):683-9
Kearns, C.A., Ravanelli, A.M., Cooper, K., Appel, B. (2015) Fbxw7 Limits Myelination by Inhibiting mTOR Signaling. The Journal of neuroscience : the official journal of the Society for Neuroscience. 35:14861-71
Welte, C., Engel, S., Stuermer, C.A. (2015) Upregulation of the zebrafish Nogo-A homologue, Rtn4b, in retinal ganglion cells is functionally involved in axon regeneration. Neural Development. 10:6
Yang, M.L., Shin, J., Kearns, C.A., Langworthy, M.M., Snell, H., Walker, M.B., Appel, B. (2015) CNS Myelination Requires Cytoplasmic Dynein Function. Developmental Dynamics : an official publication of the American Association of Anatomists. 244(2):134-45
Boczonadi, V., Müller, J.S., Pyle, A., Munkley, J., Dor, T., Quartararo, J., Ferrero, I., Karcagi, V., Giunta, M., Polvikoski, T., Birchall, D., Princzinger, A., Cinnamon, Y., Lützkendorf, S., Piko, H., Reza, M., Florez, L., Santibanez-Koref, M., Griffin, H., Schuelke, M., Elpeleg, O., Kalaydjieva, L., Lochmüller, H., Elliott, D.J., Chinnery, P.F., Edvardson, S., Horvath, R. (2014) EXOSC8 mutations alter mRNA metabolism and cause hypomyelination with spinal muscular atrophy and cerebellar hypoplasia. Nature communications. 5:4287
Lewis, G.M., Kucenas, S. (2014) Perineurial Glia Are Essential for Motor Axon Regrowth following Nerve Injury. The Journal of neuroscience : the official journal of the Society for Neuroscience. 34:12762-77
Salta, E., Lau, P., Sala Frigerio, C., Coolen, M., Bally-Cuif, L., De Strooper, B. (2014) A Self-Organizing miR-132/Ctbp2 Circuit Regulates Bimodal Notch Signals and Glial Progenitor Fate Choice during Spinal Cord Maturation. Developmental Cell. 30(4):423-36
Smith, C.J., Morris, A.D., Welsh, T.G., Kucenas, S. (2014) Contact-Mediated Inhibition Between Oligodendrocyte Progenitor Cells and Motor Exit Point Glia Establishes the Spinal Cord Transition Zone. PLoS Biology. 12:e1001961
Yin, W., and Hu, B. (2014) Knockdown of Lingo1b protein promotes myelination and oligodendrocyte differentiation in zebrafish. Experimental neurology. 241:72-83
Zannino, D.A., Downes, G.B., Sagerström, C.G. (2014) prdm12b specifies the p1 progenitor domain and reveals a role for V1 interneurons in swim movements. Developmental Biology. 390:247-60
Glenn, T.D., and Talbot, W.S. (2013) Analysis of Gpr126 function defines distinct mechanisms controlling the initiation and maturation of myelin. Development (Cambridge, England). 140(15):3167-75
Lee, R., Thiery, J.P., and Carney, T.J. (2013) Dermal fin rays and scales derive from mesoderm, not neural crest. Current biology : CB. 23(9):R336-337
Malmquist, S.J., Abramsson, A., McGraw, H.F., Linbo, T.H., Raible, D.W. (2013) Modulation of dorsal root ganglion development by ErbB signaling and the scaffold protein Sorbs3. Development (Cambridge, England). 140:3986-3996
Monk, K.R., Voas, M.G., Franzini-Armstrong, C., Hakkinen, I.S., and Talbot, W.S. (2013) Mutation of sec63 in zebrafish causes defects in myelinated axons and liver pathology. Disease models & mechanisms. 6(1):135-145
Zou, S., Tian, C., Ge, S., and Hu, B. (2013) Neurogenesis of retinal ganglion cells is not essential to visual functional recovery after optic nerve injury in adult zebrafish. PLoS One. 8(2):e57280
Kim, S., Kim, J.D., Chung, A.Y., Kim, H.S., Kim, Y.S., Kim, M.J., Koun, S., Lee, Y.M., Rhee, M., Park, H.C., and Huh, T.L. (2012) Antagonistic Regulation of PAF1C and p-TEFb Is Required for Oligodendrocyte Differentiation. The Journal of neuroscience : the official journal of the Society for Neuroscience. 32(24):8201-8207
Langworthy, M.M., and Appel, B. (2012) Schwann cell myelination requires Dynein function. Neural Development. 7(1):37
Moore, A.C., Mark, T.E., Hogan, A.K., Topczewski, J., and Leclair, E.E. (2012) Peripheral axons of the adult zebrafish maxillary barbel extensively remyelinate during sensory appendage regeneration. The Journal of comparative neurology. 520(18):4184-4203
März, M., Schmidt, R., Rastegar, S., and Strähle, U. (2011) Regenerative response following stab injury in the adult zebrafish telencephalon. Developmental Dynamics : an official publication of the American Association of Anatomists. 240(9):2221-2231
Takada, N., Kucenas, S., and Appel, B. (2010) Sox10 is necessary for oligodendrocyte survival following axon wrapping. Glia. 58(8):996-1006
Kucenas, S., Wang, W.D., Knapik, E.W., and Appel, B. (2009) A selective glial barrier at motor axon exit points prevents oligodendrocyte migration from the spinal cord. The Journal of neuroscience : the official journal of the Society for Neuroscience. 29(48):15187-15194
Lyons, D.A., Naylor, S.G., Scholze, A., and Talbot, W.S. (2009) Kif1b is essential for mRNA localization in oligodendrocytes and development of myelinated axons. Nature Genetics. 41(7):854-858
Monk, K.R., Naylor, S.G., Glenn, T.D., Mercurio, S., Perlin, J.R., Dominguez, C., Moens, C.B., and Talbot, W.S. (2009) A G protein-coupled receptor is essential for Schwann cells to initiate myelination. Science (New York, N.Y.). 325(5946):1402-1405
Voas, M.G., Lyons, D.A., Naylor, S.G., Arana, N., Rasband, M.N., and Talbot, W.S. (2007) alphaII-Spectrin Is Essential for Assembly of the Nodes of Ranvier in Myelinated Axons. Current biology : CB. 17(6):562-568
Woods, I.G., Lyons, D.A., Voas, M.G., Pogoda, H.M., and Talbot, W.S. (2006) nsf Is Essential for Organization of Myelinated Axons in Zebrafish. Current biology : CB. 16(7):636-648
Lyons, D.A., Pogoda, H.M., Voas, M.G., Woods, I.G., Diamond, B., Nix, R., Arana, N., Jacobs, J., and Talbot, W.S. (2005) erbb3 and erbb2 Are Essential for Schwann Cell Migration and Myelination in Zebrafish. Current biology : CB. 15(6):513-524
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