S
Satoe Ebihara
Researcher at University of Tokyo
Publications - 7
Citations - 489
Satoe Ebihara is an academic researcher from University of Tokyo. The author has contributed to research in topics: Gene & GABAergic. The author has an hindex of 6, co-authored 6 publications receiving 445 citations. Previous affiliations of Satoe Ebihara include Graduate University for Advanced Studies.
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Journal ArticleDOI
Quantitative Chemical Composition of Cortical GABAergic Neurons Revealed in Transgenic Venus-Expressing Rats
Masakazu Uematsu,Yasuharu Hirai,Fuyuki Karube,Satoe Ebihara,Megumi Kato,Kuniya Abe,Kunihiko Obata,Sachiko Yoshida,Masumi Hirabayashi,Yuchio Yanagawa,Yasuo Kawaguchi +10 more
TL;DR: The benefits of VGAT-Venus rats for investigating GABAergic circuits, as well as the feasibility of using BAC technology in rats to label subsets of specific, genetically defined neurons, are demonstrated.
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Fluorescent labeling of both GABAergic and glycinergic neurons in vesicular GABA transporter (VGAT)-venus transgenic mouse
Y. Wang,Toshikazu Kakizaki,Hiroyuki Sakagami,Kenzi Saito,Kenzi Saito,Satoe Ebihara,M. Kato,Masumi Hirabayashi,Yasuhiko Saito,Nobuhiko Furuya,Yuchio Yanagawa +10 more
TL;DR: Double immunostaining analysis in line #39 mouse showed that Venus-expressing cells are primarily immunoreactive for GABA in cerebral cortex, hippocampus and cerebellar cortex and for GABA or glycine in dorsal cochlear nucleus.
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The physiological roles of vesicular GABA transporter during embryonic development: a study using knockout mice
Kenzi Saito,Toshikazu Kakizaki,Ryotaro Hayashi,Hiroshi Nishimaru,Tomonori Furukawa,Yoichi Nakazato,Shigeo Takamori,Satoe Ebihara,Masakazu Uematsu,Masayoshi Mishina,Jun-ichi Miyazaki,Minesuke Yokoyama,Shiro Konishi,Koichi Inoue,Atsuo Fukuda,Manabu Fukumoto,Kenji Nakamura,Kunihiko Obata,Yuchio Yanagawa +18 more
TL;DR: VGAT knockouts at embryonic day 18.5 exhibited substantial increases in overall GABA and glycine, but not glutamate, contents in the forebrain, indicating that the development of skeletal muscle, liver and lung in these mice was severely affected.
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Mouse vesicular GABA transporter gene : genomic organization, transcriptional regulation and chromosomal localization
TL;DR: Results suggest a possible mechanism for regulation of the expression of the mVGAT gene, which was expressed at a high level in retinoic acid-treated P19 embryonal carcinoma cells, at a very low level in non- treated P19 cells, and not detectably expressed in Neuro-2a neuroblastoma cells.
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Gene structure and alternative splicing of the mouse glycine transporter type-2.
TL;DR: Analysis of the genomic clones encompassing the 5'-exons revealed that the three transcripts arose from a single gene by alternative splicing, and RT-PCR analysis indicated that all three mGLYT2 isoforms were expressed at high levels in brain stem and spinal cord.