The references for the papars where CUY21 series electroporators are used.
You move to what you click the titles.
Ohtsuka, T., Sakamoto, M., Guillemot, F. and Kageyama, R. (2001). Roles of the Basic Helix-Loop-Helix Genes Hes1 and Hes5 in Expansion of Neural Stem Cells of the Developing Brain. J. Biol. Chem. 276, 30467-30474.
Fukuchi-Shimogori, T. and Grove, E. A. (2003). Emx2 Patterns the Neocortex by Regulating FGF Positional Signaling. Nat. Neurosci. 6, 825-831.
Hatakeyama, J., Bessho, Y., Katoh, K., Ookawara, S., Fujioka, M., Guillemot, F. and Kageyama, R. (2004). Hes Genes Regulate Size, Shape and Histogenesis of the Nervous System by Control of the Timing of Neural Stem Cell Differentiation. Development 131, 5539-5550.
Hatanaka, Y., Hisanaga, S.
Hirabayashi, Y., Itoh, Y., Tabata, H., Nakajima, K., Akiyama, T., Masuyama, N. and Gotoh, Y. (2004). The Wnt/β-Catenin Pathway Directs Neuronal Differentiation of Cortical Neural Precursor Cells. Development 131, 2791-2801.
Konishi, Y., Stegmuller, J., Matsuda, T., Bonni, S. and Bonni, A. (2004). Cdh1-APC Controls Axonal Growth and Patterning in the Mammalian Brain. Science 303, 1026-1030.
Takiguchi-Hayashi, K., Sekiguchi, M., Ashigaki, S.,
Barnabé-Heider, F., Wasylnka, J. A., Fernandes, K. J. L., Porsche, C., Sendtner, M., Kaplan, D. R. and Miller, F. D. (2005). Evidence that Embryonic Neurons Regulate the Onset of Cortical Gliogenesis Via Cardiotrophin-1. Neuron 48, 253-265.
Borrell, V., Yoshimura, Y. and Callaway, E. M. (2005). Targeted Gene Delivery to Telencephalic Inhibitory Neurons by Directional In Utero Electroporation. J. Neurosci. Methods 143, 151-158.
Kamitori, K., Tanaka, M., Okuno-Hirasawa, T. and Kohsaka, S. (2005). Receptor Related to Tyrosine Kinase RYK Regulates Cell Migration during Cortical Development. Biochem. Biophys. Res. Commun. 330, 446-453.
Kohyama, J., Tokunaga, A., Fujita, Y., Miyoshi, H., Nagai, T., Miyawaki, A., Nakao, K., Matsuzaki, Y. and Okano, H. (2005). Visualization of Spatiotemporal Activation of Notch Signaling: Live Monitoring and Significance in Neural Development. Dev. Biol. 286, 311-325.
Nakahira, E. and Yuasa, S. (2005). Neuronal Generation, Migration, and Differentiation in the Mouse Hippocampal Primoridium as Revealed by Enhanced Green Fluorescent Protein Gene Transfer by Means of In Utero Electroporation. J. Comp. Neurol. 483, 329-340.
Paquin, A., Barnabe-Heider, F., Kageyama, R. and Miller, F. D. (2005). CCAAT/Enhancer-Binding Protein Phosphorylation Biases Cortical Precursors to Generate Neurons rather than Astrocytes In Vivo. J. Neurosci. 25, 10747-10758.
Yozu, M., Tabata, H. and Nakajima, K. (2005). The Caudal Migratory Stream: A Novel Migratory Stream of Interneurons Derived from the Caudal Ganglionic Eminence in the Developing Mouse Forebrain. J. Neurosci. 25, 7268-7277.
Fukumitsu, H., Ohtsuka, M., Murai, R., Nakamura, H., Itoh, K. and Furukawa, S. (2006). Brain-Derived Neurotrophic Factor Participates in Determination of Neuronal Laminar Fate in the Developing Mouse Cerebral Cortex. J. Neurosci. 26, 13218-13230.
Nakahira, E., Kagawa, T.,
Naruse, M., Nakahira, E., Miyata, T., Hitoshi, S., Ikenaka, K. and Bansal, R. (2006). Induction of Oligodendrocyte Progenitors in Dorsal Forebrain by Intraventricular Microinjection of FGF-2. Dev. Biol. 297, 262-273.
Saito, T. (2006). In Vivo Electroporation in the Embryonic Mouse Central Nervous System. Nature Protoc. 1, 1552-1558.
Tanaka, D. H., Maekawa, K., Yanagawa, Y., Obata, K. and Murakami, F. (2006). Multidirectional and Multizonal Tangential Migration of GABAergic Interneurons in the Developing Cerebral Cortex. Development 133, 2167-2176.
Bartkowska, K., Paquin, A., Gauthier, A. S., Kaplan, D. R. and Miller, F. D. (2007). Trk Signaling Regulates Neural Precursor Cell Proliferation and Differentiation during Cortical Development. Development 134, 4369-4380.
Chang, M. Y., Sun, W., Ochiai, W., Nakashima, K., Kim, S. Y., Park, C. H., Kang, J. S., Shim, J. W. and Jo, A. (2007). Bcl-XL/Bax Proteins Direct the Fate of Embryonic Cortical Precursor Cells. Mol. Cell Biol. 27, 4293-4305.
Inoue, T., Ota, M., Ogawa, M., Mikoshiba, K. and Aruga, J. (2007). Zic1 and Zic3 Regulate Medial Forebrain Development through Expansion of Neuronal Progenitors. J. Neurosci. 27, 5461-5473.
Itoh, Y., Masuyama, N., Nakayama, K., Nakayama, K. I. and Gotoh, Y. (2007). The Cyclin-Dependent Kinase Inhibitors p57 and p27 Regulate Neuronal Migration in the Developing Mouse Neocortex. J. Biol. Chem. 282, 390-396.
Kaiga, T., Sato, M., Kaneda, H., Iwakura, Y., Takayama, T. and Tahara, H. (2007). Systemic Administration of IL-23 Induces Potent Antitumor Immunity Primarily Mediated through Th1-Type Response in Association with the Endogenously Expressed IL-12. J. Immunol. 178, 7571-7580.
Gauthier, A. S., Furstoss, O., Araki, T., Chan, R., Neel, B. G., Kaplan, D. R. and Miller, F. D. (2007). Control of CNS Cell-Fate Decisions by SHP-2 and Its Dysregulation in Noonan Syndrome. Neuron 54, 245-262.
Mizuno, H., Hirano, T. and Tagawa, Y. (2007). Evidence for Activity-Dependent Cortical Wiring: Formation of Interhemispheric Connections in Neonatal Mouse Visual Cortex Requires Projection Neuron Activity. J. Neurosci. 27, 6760-6770.
Okada, T., Keino-Masu, K. and Masu, M. (2007). Migration and Nucleogenesis of Mouse Precerebellar Neurons Visualized by In Utero Electroporation of a Green Fluorescent Protein Gene. Neurosci. Res. 57, 40-49.
Sahara, S., Kawakami, Y., Belmonte, J. C. I. and O’Leary,
Wang, X., Qiu, R., Tsark, W. and Lu, Q. (2007). Rapid Promoter Analysis in Developing Mouse Brain and Genetic Labeling of Young Neurons by Doublecortin-DsRed-express. J. Neurosci. Res 85, 3567-3573.
Friocourt, G., Kanatani, S., Tabata, H., Yozu, M., Takahashi, T., Antypa, M., Raguenes, O., Chelly, J., Ferec, C. and Nakajima, K. (2008). Cell-Autonomous Roles of ARX in Cell Proliferation and Neuronal Migration during Corticogenesis. J. Neurosci. 28, 5794-5805.
Ishii, M. and Maeda, N. (2008). Oversulfated Chondroitin Sulfate Plays Critical Roles in the Neuronal Migration in the Cerebral Cortex. J. Biol. Chem. 283, 32610-32620.
Kanatani, S., Yozu, M., Tabata, H. and Nakajima, K. (2008). COUP-TFII is Preferentially Expressed in the Caudal Ganglionic Eminence and is Involved in the Caudal Migratory Stream. J. Neurosci. 28, 13582-13591.
Li, W., Sun, G., Yang, S., Qu, Q., Nakashima, K. and Shi, Y. (2008). Nuclear Receptor TLX Regulates Cell Cycle Progression in Neural Stem Cells of the Developing Brain. Mol. Endocrinol. 22, 56-64.
Prozorovski, T., Schulze-Topphoff, U., Glumm, R., Baumgart, J., Schröter, F., Ninnemann, O., Siegert, E., Bendix,
Sakaue-Sawano, A., Ohtawa, K.,
Tabata, H. and Nakajima, K. (2008). Labeling Embryonic Mouse Central Nervous System Cells by In Utero Electroporation. Dev. Growth Differ. 50, 507-511.
Tuoc, T. C. and Stoykova, A. (2008). Trim11 Modulates the Function of Neurogenic Transcription Factor Pax6 through Ubiquitin-Proteosome System. Genes Dev. 22, 1972-1986.
Yozu, M., Tabata, H., Konig, N. and Nakajima, K. (2008). Migratory Behavior of Presumptive Interneurons is Affected by AMPA Receptor Activation in Slice Cultures of Embryonic Mouse Neocortex. Dev. Neurosci. 30, 105-116.
Cina, C., Maass, K., Theis, M., Willecke, K., Bechberger, J. F. and Naus, C. C. (2009). Involvement of the Cytoplasmic C-Terminal Domain of Connexin43 in Neuronal Migration. J. Neurosci. 29, 2009-2021.
Dugani, C. B., Paquin, A., Fujitani, M., Kaplan, D. R. and Miller, F. D. (2009). P63 Antagonizes p53 to Promote the Survival of Embryonic Neural Precursor Cells. J. Neurosci. 29, 6710-6721.
Fujimoto, S., Negishi, M. and Katoh, H. (2009). RhoG Promotes Neural Progenitor Cell Proliferation in Mouse Cerebral Cortex. Mol. Biol. Cell 20, 4941-4950.
Gelman, D. M., Martini, F. J., Nobrega-Pereira, S., Pierani, A., Kessaris, N. and Marin, O. (2009). The Embryonic Preoptic Area is a Novel Source of Cortical GABAergic Interneurons. J. Neurosci. 29, 9380-9389.
Ishiuchi, T., Misaki, K., Yonemura, S., Takeichi, M. and Tanoue, T. (2009). Mammalian Fat and Dachsous Cadherins Regulate Apical Membrane Organization in the Embryonic Cerebral Cortex. J. Cell Biol. 185, 959-967.
Morimura, T. and Ogawa, M. (2009). Relative Importance of the Tyrosine Phosphorylation Sites of Disabled-1 to the Transmission of Reelin Signaling. Brain Res. 1304, 26-37.
Orlova, K. A., Parker, W. E., Heuer, G. G., Tsai, V., Yoon, J., Baybis, M., Fenning, R. S., Strauss, K. and Crino, P. B. (2010). STRADα Deficiency Results in Aberrant mTORC1 Signaling during Corticogenesis in Humans and Mice. J. Clin. Invest. 120, 1591-1602.
Paquin, A., Hordo, C., Kaplan, D. R. and Miller, F. D. (2009). Costello Syndrome H-Ras Alleles Regulate Cortical Development. Dev. Biol. 330, 440-451.
Peng, Y. R., He, S., Marie, H., Zeng, S. Y., Ma, J., Tan, Z. J., Lee, S. Y., Malenka, R. C. and Yu, X. (2009). Coordinated Changes in Dendritic Arborization and Synaptic Strength during Neural Circuit Development. Neuron 61, 71-84.
Tsuchiya, R., Takahashi, K., Liu, F. C. and Takahashi, H. (2009). Aberrant Axonal Projections from Mammillary Bodies in Pax6 Mutant Mice: Possible Roles of Netrin-1 and Slit 2 in Mammillary Projections. J. Neurosci. Res 87, 1620-1633.
Vue, T. Y., Bluske, K., Alishahi, A., Yang, L. L., Koyano-Nakagawa, N., Novitch, B. and Nakagawa, Y. (2009). Sonic Hedgehog Signaling Controls Thalamic Progenitor Identity and Nuclei Specification in Mice. J. Neurosci. 29, 4484-4497.
Zhao, C., Sun, G. Q., Li, S. and Shi, Y. (2009). A Feedback Regulatory
Dugani, C. B., Paquin, A., Kaplan, D. R. and Miller, F. D. (2010). Coffin-Lowry Syndrome: A Role for RSK2 in Mammalian Neurogenesis. Dev. Biol. 347, 348-359.
Fazzari, P., Paternain, A. V., Valiente, M., Pla, R., Luján, R., Lloyd, K., Lerma, J., Marín, O. and Rico, B. (2010). Control of Cortical GABA Circuitry Development by Nrg1 and ErbB4 Signalling. Nature, 1376-1380.
Kato, T. M.,
Nóbrega-Pereira, S., Gelman, D., Bartolini, G., Pla, R., Pierani, A. and Marin, O. (2010). Origin and Molecular Specification of Globus Pallidus Neurons. J. Neurosci. 30, 2824-2834.
Ortega, J. A. and Alcántara, S. (2010). BDNF/MAPK/ERK-Induced BMP7 Expression in the Developing Cerebral Cortex Induces Premature Radial Glia Differentiation and Impairs Neuronal Migration. Cereb. Cortex 20, 2132-2144.
Takemoto, M., Hattori, Y., Zhao, H., Sato, H., Tamada, A., Sasaki, S., Nakajima, K. and Yamamoto, N. (2011). Laminar and Areal Expression of Unc5d and Its Role in Cortical Cell Survival. Cereb. Cortex Epub ahead of print.
Saito, T. (2010). Embryonic In Vivo Electroporation in the Mouse. Meth. Enzymol., 477, 37-50.
Tanaka, S., Kodama, T., Nonaka, T., Toyoda, H., Arai, M., Fukazawa, M., Honda, Y., Honda, M. and Mignot, E. (2010). Transcriptional Regulation of the hypocretin/orexin Gene by NR6A1. Biochem. Biophys. Res. Commun. 403, 178-183.
Uchino, S., Hirasawa, T., Tabata, H., Gonda, Y., Waga, C., Ondo, Y., Nakajima, K. and Kohsaka, S. (2010). Inhibition of N-Methyl-D-Aspartate Receptor Activity Resulted in Aberrant Neuronal Migration Caused by Delayed Morphological Development in the Mouse Neocortex. Neuroscience 169, 609-618.
Yano, M., Hayakawa-Yano, Y., Mele, A. and Darnell, R. B. (2010). Nova2 Regulates Neuronal Migration through an RNA Switch in Disabled-1 Signaling. Neuron 66, 848-858.
Takahashi, M., Sato, K., Nomura, T. and Osumi, N. (2002). Manipulating Gene Expressions by Electroporation in the Developing Brain of Mammalian Embryos. Differentiation 70, 155-162.
Tamai, H., Shinohara, H., Miyata, T., Saito, K., Nishizawa, Y., Nomura, T. and Osumi, N. (2007). Pax6 Transcription Factor is Required for the Interkinetic Nuclear Movement of Neuroepithelial Cells. Gene Cells 12, 983-996.
Wake, H., Watanabe, M., Moorhouse, A. J., Kanematsu, T., Horibe, S., Matsukawa, N., Asai, K., Ojika, K., Hirata, M. and Nabekura, J. (2007). Early Changes in KCC2 Phosphorylation in Response to Neuronal Stress Result in Functional Downregulation. J. Neurosci. 27, 1642-1650.
Conrad, S., Stimpfle, F., Montazeri, S., Oldekamp, J., Seid, K., Alvarez-Bolado, G. and Skutella, T. (2010). RGMb Controls Aggregation and Migration of Neogenin-Positive Cells In Vitro and In Vivo. Mol. Cell. Neurosci. 43, 222-231.
Zhu, L. Q., Zheng, H. Y., Peng, C. X., Liu, D., Li, H. L., Wang, Q. and Wang, J. Z. (2010). Protein Phosphatase 2A Facilitates Axonogenesis by Dephosphorylating CRMP2. J. Neurosci. 30, 3839-3848.
Honma, Y., Kawano, M., Kohsaka, S. and Ogawa, M. (2010). Axonal Projections of Mechanoreceptive Dorsal Root Ganglion Neurons Depend on Ret. Development 137, 2319-2328.
Garcia-Frigola, C., Carreres, M. I., Vegar, C. and Herrera, E. (2007). Gene Delivery into Mouse Retinal Ganglion Cells by In Utero Electroporation. BMC Dev. Biol. 7, 103.
Brigande, J. V., Gubbels, S. P., Woessner, D. W., Jungwirth, J. J. and Bresee, C. S. (2009). Electroporation-Mediated Gene Transfer to the Developing Mouse Inner Ear. Methods Mol. Biol. 493, 125-139.
Yamamoto, M., Mine, N., Mochida, K.,
Sawada, A., Nishizaki, Y., Sato, H., Yada, Y., Nakayama, R., Yamamoto, S., Nishioka, N., Kondoh, H. and Sasaki, H. (2005). Tead Proteins Activate the Foxa2 Enhancer in the Node in Cooperation with a Second Factor. Development 132, 4719-4729.
Shibuya, T., Watanabe, K., Yamashita, H.,
Koike, S., Keino-Masu, K., Ohto, T., Sugiyama, F., Takahashi, S. and Masu, M. (2009). Autotaxin/Lysophospholipase D-Mediated Lysophosphatidic Acid Signaling is Required to Form Distinctive Large Lysosomes in the Visceral Endoderm Cells of the Mouse Yolk Sac. J. Biol. Chem. 284, 33561-33570.
Osumi, N. and Inoue, T. (2001). Gene Transfer into Cultured Mammalian Embryos by Electroporation. Methods 24, 35-42.
Takahashi, M. and Osumi, N. (2002). Pax6 Regulates Specification of Ventral Neurone Subtypes in the Hindbrain by Establishing Progenitor Domains. Development 129, 1327-1338.
Takahashi, M., Sato, K., Nomura, T. and Osumi, N. (2002). Manipulating Gene Expressions by Electroporation in the Developing Brain of Mammalian Embryos. Differentiation 70, 155-162.
Nomura, T. and Osumi, N. (2004). Misrouting of Mitral Cell Progenitors in the Pax6/small eye Rat Telencephalon. Development 131, 787-796.
Arai, Y., Funatsu, N., Numayama-Tsuruta, K., Nomura, T., Nakamura, S. and Osumi, N. (2005). Role of Fabp7, a Downstream Gene of Pax6, in the Maintenance of Neuroepithelial Cells during Early Embryonic Development of the Rat Cortex. J. Neurosci. 25, 9752-9761.
Nomura, T., Holmberg, J., Frisen, J. and Osumi, N. (2006). Pax6-Dependent Boundary Defines Alignment of Migrating Olfactory Cortex Neurons via the Repulsive Activity of Ephrin A5. Development 133, 1335-1345.
Takahashi, M., Nomura, T. and Osumi, N. (2008). Transferring Genes into Cultured Mammalian Embryos by Electroporation. Dev. Growth Differ. 50, 485-497.
Yamauchi, K., Mizushima, S., Tamada, A., Yamamoto, N., Takashima, S. and Murakami, F. (2009). FGF8 Signaling Regulates Growth of Midbrain Dopaminergic Axons by Inducing Semaphorin 3F. J. Neurosci. 29, 4044-4055.
Hasegawa, H., Ashigaki, S., Takamatsu, M., Suzuki-Migishima, R., Ohbayashi, N., Itoh, N., Takada, S. and Tanabe, Y. (2004). Laminar Patterning in the Developing Neocortex by Temporally Coordinated Fibroblast Growth Factor Signaling. J. Neurosci. 24, 8711-8719.
Honda, T. and Nakajima, K. (2006). Mouse Disabled1 (DAB1) is a Nucleocytoplasmic Shuttling Protein. J. Biol. Chem. 281, 38951-38965.
Szabó, N. E., Zhao, T., Cankaya, M., Theil, T., Zhou, X. and Alvarez-Bolado, G. (2009). Role of Neuroepithelial Sonic Hedgehog in Hypothalamic Patterning. J. Neurosci. 29, 6989-7002.
Cundiff, P., Liu, L., Wang, Y., Zou, J., Pan, Y. W., Abel, G., Duan, X., Ming, G., Englund, C. and Hevner, R. (2009). ERK5 MAP Kinase Regulates Neurogenin1 during Cortical Neurogenesis. PLoS One 4, 5204.
Araki, I. and Nakamura, H. (1999). Engrailed Defines the Position of Dorsal Di-Mesencephalic Boundary by Repressing Diencephalic Fate. Development 126, 5127-5135.
Schulte, D., Furukawa, T., Peters, M. A., Kozak, C. A. and Cepko, C. L. (1999). Misexpression of the Emx-Related Homeobox Genes cVax and mVax2 Ventralizes the Retina and Perturbs the Retinotectal Map. Neuron 24, 541-553.
Watanabe, Y. and Nakamura, H. (2000). Control of Chick Tectum Territory Along Dorsoventral Axis by Sonic Hedgehog. Development 127, 1131-1140.
Sato, T., Araki, I. and Nakamura, H. (2001). Inductive Signal and Tissue Responsiveness Defining the Tectum and the Cerebellum. Development 128, 2461-2469.
Chen, C. M. A. and Cepko, C. L. (2002). The Chicken RaxL Gene Plays a Role in the Initiation of Photoreceptor Differentiation. Development 129, 5363-5375.
Kobayashi, D., Kobayashi, M., Matsumoto, K., Ogura, T., Nakafuku, M. and Shimamura, K. (2002). Early Subdivisions in the Neural Plate Define Distinct Competence for Inductive Signals. Development 129, 83-93.
Naito, M., Sano, A., Tagami, T., Harumi, T., Matsubara, Y. and Kuwana, T. (2002). Efficient Gene Transfer into Early Chicken Embryos by Electroporation of Stage X Blastoderms In Vivo, Applying Electric Pulses Vertically to the Blastoderm Layer. J. Poult. Sci. 39, 292-301.
Oberg, K. C., Pira, C. U., Revelli, J. P., Ratz, B., Aguilar-Cordova, E. and Eichele, G. (2002). Efficient Ectopic Gene Expression Targeting Chick Mesoderm. Dev. Dyn. 224, 291-302.
Eblaghie, M. C., Lunn, J. S., Dickinson, R. J., Münsterberg, A. E., Sanz-Ezquerro, J. J., Farrell, E. R., Mathers, J., Keyse, S. M., Storey, K. and Tickle, C. (2003). Negative Feedback Regulation of FGF Signaling Levels by Pyst1/MKP3 in Chick Embryos. Curr. Biol. 13, 1009-1018.
Jin, Z., Zhang, J., Klar, A., Chédotal, A., Rao, Y., Cepko, C. L. and Bao, Z. Z. (2003). Irx4-Mediated Regulation of Slit1 Expression Contributes to the Definition of Early Axonal Paths Inside the Retina. Development 130, 1037-1048.
Sakiyama, J., Yamagishi, A. and Kuroiwa, A. (2003). Tbx4-Fgf10 System Controls Lung Bud Formation during Chicken Embryonic Development. Development 130, 1225-1234.
Takeuchi, J. K., Koshiba-Takeuchi, K., Suzuki, T., Kamimura, M., Ogura, K. and Ogura, T. (2003). Tbx5 and Tbx4 Trigger Limb Initiation through Activation of the Wnt/Fgf Signaling Cascade. Development 130, 2729-2739.
Uchikawa, M., Ishida, Y., Takemoto, T., Kamachi, Y. and Kondoh, H. (2003). Functional Analysis of Chicken Sox2 Enhancers Highlights an Array of Diverse Regulatory Elements that are Conserved in Mammals. Dev. Cell 4, 509-519.
Alsina, B., Abelló, G., Ulloa, E., Henrique, D., Pujades, C. and Giraldez, F. (2004). FGF Signaling is Required for Determination of Otic Neuroblasts in the Chick Embryo. Dev. Biol. 267, 119-134.
Krull, C. E. (2004). A Primer on using In Ovo Electroporation to Analyze Gene Function. Dev. Dyn. 229, 433-439.
Matsunaga, E., Tauszig-Delamasure, S., Monnier, P. P., Mueller, B. K., Strittmatter, S. M., Mehlen, P. and Chédotal, A. (2004). RGM and its Receptor Neogenin Regulate Neuronal Survival. Nat. Cell Biol. 6, 749-755.
Sato, F., Nakagawa, T., Ito, M., Kitagawa, Y. and Hattori, M. (2004). Application of RNA Interference to Chicken Embryos using Small Interfering RNA. J. Exp. Zool. A Comp. Exp. Biol. 301, 820-827.
Sato, T. and Nakamura, H. (2004). The Fgf8 Signal Causes Cerebellar Differentiation by Activating the Ras-ERK Signaling Pathway. Development 131, 4275-4285.
Tanabe, K., Takeichi, M. and Nakagawa, S. (2004). Identification of a nonchordate-type Classic Cadherin in Vertebrates: Chicken Hz-cadherin is Expressed in Horizontal Cells of the Neural Retina and Contains a Nonchordate-Specific Domain Complex. Dev. Dyn. 229, 899-906.
Uchikawa, M., Takemoto, T., Kamachi, Y. and Kondoh, H. (2004). Efficient Identification of Regulatory Sequences in the Chicken Genome by a Powerful Combination of Embryo Electroporation and Genome Comparison. Mech. Dev. 121, 1145-1158.
Wakamatsu, Y., Endo, Y., Osumi, N. and Weston, J. A. (2004). Multiple Roles of Sox2, an HMG-Box Transcription Factor in Avian Neural Crest Development. Dev. Dyn. 229, 74-86.
Watanabe, Y., Toyoda, R. and Nakamura, H. (2004). Navigation of Trochlear Motor Axons Along the Midbrain-Hindbrain Boundary by Neuropilin 2. Development 131, 681-692.
Azuma, N., Tadokoro, K., Asaka, A., Yamada, M., Yamaguchi, Y., Handa, H., Matsushima, S., Watanabe, T., Kida, Y., Ogura, T., Torii, M., Shimamura, K., and Nakafuku, M. (2005). Transdifferentiation of the Retinal Pigment Epithelia to the Neural Retina by Transfer of the Pax6 Transcriptional Factor. Hum. Mol. Genet. 14, 1059-1068.
Azuma, N., Tadokoro, K., Asaka, A., Yamada, M., Yamaguchi, Y., Handa, H., Matsushima, S., Watanabe, T., Kohsaka, S. and Kida, Y., Shiraishi, T., Ogura, T., Shimamura, K., and Nakafuku, M. (2005). The Pax6 Isoform Bearing an Alternative Spliced Exon Promotes the Development of the Neural Retinal Structure. Hum. Mol. Genet. 14, 735-745.
Hilgers, V., Pourquié, O. and Dubrulle, J. (2005). In Vivo Analysis of mRNA Stability Using the Tet-Off System in the Chicken Embryo. Dev. Biol. 284, 292-300.
Ladher, R. K., Wright, T. J., Moon, A. M., Mansour, S. L. and Schoenwolf, G. C. (2005). FGF8 Initiates Inner Ear Induction in Chick and Mouse. Genes Dev. 19, 603-613.
Matsumata, M., Uchikawa, M., Kamachi, Y. and Kondoh, H. (2005). Multiple N-Cadherin Enhancers Identified by Systematic Functional Screening Indicate its Group B1 SOX-Dependent Regulation in Neural and Placodal Development. Dev. Biol. 286, 601-617.
Sato, N., Sakuma, C., Sato, Y., Gould, T. W., Oppenheim, R. W. and Yaginuma, H. (2005). Distinct Susceptibility of Developing Neurons to Death Following Bax Overexpression in the Chicken Embryo. Cell Death Differ. 13, 435-445.
Blackmore, M. and Letourneau, P. C. (2006). L1, β1 Integrin, and Cadherins Mediate Axonal Regeneration in the Embryonic Spinal Cord. J. Neurobiol. 66, 1564-1583.
Cui, C., Lansford, R., Filla, M. B., Little, C. D., Cheuvront, T. J. and Rongish, B. J. (2006). Electroporation and EGFP Labeling of Gastrulating Quail Embryos. Dev. Dyn. 235, 2802-2810.
Miyazaki, H., Kobayashi, T., Nakamura, H. and Funahashi, J. (2006). Role of Gbx2 and Otx2 in the Formation of Cochlear Ganglion and Endolymphatic Duct. Dev. Growth Differ. 48, 429-438.
Saitsu, H., Shiota, K. and Ishibashi, M. (2006). Analysis of Fibroblast Growth Factor 15 Cis-Elements Reveals Two Conserved Enhancers Which are Closely Related to Cardiac Outflow Tract Development. Mech. Dev. 123, 665-673.
Shukunami, C., Takimoto, A., Oro, M. and Hiraki, Y. (2006). Scleraxis Positively Regulates the Expression of Tenomodulin, a Differentiation Marker of Tenocytes. Dev. Biol. 298, 234-247.
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