Rchr
J-GLOBAL ID:201301012143796824   Update date: Mar. 08, 2024

Katada Sayako

カタダ サヤコ | Katada Sayako
Affiliation and department:
Homepage URL  (1): http://kaken.nii.ac.jp/d/r/00615685.ja.html
Research field  (1): Neuroscience - general
Research keywords  (5): 脈絡叢 ,  老化 ,  エピジェネティクス ,  神経幹細胞 ,  分化制御
Research theme for competitive and other funds  (11):
  • 2022 - 2026 脈絡叢変容による脳内液性環境老化の分子機構
  • 2020 - 2023 神経幹細胞のニューロン産生能低下に呼応したDNAメチル化獲得領域の意義
  • 2017 - 2019 脈絡叢の変性と神経幹細胞老化の連関解析
  • 2015 - 2017 加齢に伴う脈絡叢の性質変化による神経幹細胞の挙動変化と神経疾患発症機構の関連解析
  • 2014 - 2017 神経幹細胞の発生段階依存的な分化能変換の分子機構解明
Show all
Papers (22):
  • Yuki Uchihara, Tiara Bunga Mayang Permata, Hiro Sato, Reika Kawabata-Iwakawa, Sayako Katada, Wenchao Gu, Sangeeta Kakoti, Motohiro Yamauchi, Reona Kato, Soehartati Gondhowiardjo, et al. DNA damage promotes HLA class I presentation by stimulating a pioneer round of translation-associated antigen production. Molecular Cell. 2022. 82. 14. 2557-2570.e7
  • Jun Takouda, Sayako Katada, Takuya Imamura, Tsukasa Sanosaka, Kinichi Nakashima. SoxE group transcription factor Sox8 promotes astrocytic differentiation of neural stem/precursor cells downstream of Nfia. Pharmacology Research Perspectives. 2021. 9. 6. e00749
  • Sayako Katada, Jun Takouda, Takumi Nakagawa, Mizuki Honda, Katsuhide Igarashi, Takuya Imamura, Yasuyuki Ohkawa, Shoko Sato, Hitoshi Kurumizaka, Kinichi Nakashima. Neural stem/precursor cells dynamically change their epigenetic landscape to differentially respond to BMP signaling for fate switching during brain development. Genes and Development. 2021. 35. 21-22. 1431-1444
  • Marie-Theres Wittmann, Sayako Katada, Elisabeth Sock, Philipp Kirchner, Arif B. Ekici, Michael Wegner, Kinichi Nakashima, Dieter Chichung Lie, André Reis. scRNA sequencing uncovers a TCF4-dependent transcription factor network regulating commissure development in mouse. Development. 2021. 148. 14
  • Quynh Anh Thi Nguyen, David Hillis, Sayako Katada, Timothy Harris, Crystal Pontrello, Theodore Garland, Sachiko Haga-Yamanaka. Coadaptation of the chemosensory system with voluntary exercise behavior in mice. PLOS ONE. 2020. 15. 11. e0241758-e0241758
more...
MISC (13):
  • Takumi Nakagawa, Yoshikuni Wada, Sayako Katada, Yusuke Kishi. Epigenetic regulation for acquiring glial identity by neural stem cells during cortical development. Glia. 2020
  • 本田 瑞季, 堅田 明子, 中島 欽一. エピジェネティクスの基礎(エピジェネティクスを制御する分子機構) (特集 アレルギーとエピジェネティクス). アレルギー・免疫. 2014. 21. 12. 1841-1847
  • Epigenetics : A key for the regulation of stem cell fate specification. 2012. 44. 9. 385-388
  • Tomomi Kaneko-Goto, Yuki Sato, Sayako Katada, Sei-ichi Yoshihara, Atsushi Nishiyori, Mitsuhiro Kimura, Kazushige Touhara, Randall R. Reed, Yoshihiro Yoshihara. A novel membrane protein #123 specifically expressed in olfactory sensory neurons. NEUROSCIENCE RESEARCH. 2010. 68. E386-E386
  • 堅田明子, 東原和成. 嗅覚受容体によるニオイの識別. JONES. 2007. 23. 5. 703-706
more...
Education (2):
  • 2001 - 2006 東京大学大学院 新領域創成科学研究科 先端生命科学専攻
  • 1997 - 2001 名古屋市立大学 薬学部
Professional career (1):
  • 博士(生命科学) (東京大学)
Work history (7):
  • 2023/10 - 現在 Kyushu University Faculty of Medical Sciences
  • 2013/04 - 2023/09 Kyushu University
  • 2012/01 - 2013/03 Nara Institute of Science and Technology Graduate School of Biological Sciences
  • 2011/04 - 2011/12 University of California Irvine Department of Biological Chemistry Research Specialist
  • 2007/10 - 2011/03 University of California Irvine
Show all
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page