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J-GLOBAL ID:201501064299030885   Update date: Feb. 10, 2025

Sekiyama Naotaka

セキヤマ ナオタカ | Sekiyama Naotaka
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Affiliation and department:
Research field  (1): Structural biochemistry
Research theme for competitive and other funds  (6):
  • 2022 - 2025 Multi-scale understanding of Self-condensation mechanism driven by Dynamic solution environments
  • 2022 - 2025 生化学的手法を用いた天然変性タンパク質の自己凝縮過程を制御する動的溶液環境の解明
  • 2022 - 2025 動的溶液科学の推進
  • 2019 - 2022 Structural analysis of the reversible self-assembly mechanism by intrinsically disordered proteins
  • 2017 - 2019 Self-assembly mechanism of intrinsically disordered proteins in stress granules
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Papers (10):
  • Kayo Imamura, Ken-Ichi Akagi, Yohei Miyanoiri, Hirokazu Tsujimoto, Takatsugu Hirokawa, Hideo Ashida, Kaori Murakami, Asuka Inoue, Ryoji Suno, Takahisa Ikegami, et al. Interaction modes of human orexin 2 receptor with selective and nonselective antagonists studied by NMR spectroscopy. Structure (London, England : 1993). 2024. 32. 3. 352-361
  • Naotaka Sekiyama, Ryoga Kobayashi, Takashi S Kodama. Toward a high-resolution mechanism of intrinsically disordered protein self-assembly. Journal of biochemistry. 2023. 174. 5. 391-398
  • Naotaka Sekiyama, Kiyofumi Takaba, Saori Maki-Yonekura, Ken-Ichi Akagi, Yasuko Ohtani, Kayo Imamura, Tsuyoshi Terakawa, Keitaro Yamashita, Daigo Inaoka, Koji Yonekura, et al. ALS mutations in the TIA-1 prion-like domain trigger highly condensed pathogenic structures. Proceedings of the National Academy of Sciences of the United States of America. 2022. 119. 38. e2122523119
  • Xue-Ni Hou, Naotaka Sekiyama, Yasuko Ohtani, Feng Yang, Yohei Miyanoiri, Ken-Ichi Akagi, Xun-Cheng Su, Hidehito Tochio. Conformational Space Sampled by Domain Reorientation of Linear Diubiquitin Reflected in Its Binding Mode for Target Proteins. Chemphyschem : a European journal of chemical physics and physical chemistry. 2021. 22. 14. 1505-1517
  • Naotaka Sekiyama, Andras Boeszoermenyi, Haribabu Arthanari, Gerhard Wagner, Mélissa Léger-Abraham. 1H, 13C, and 15N backbone chemical shift assignments of 4E-BP144-87 and 4E-BP144-87 bound to eIF4E. Biomolecular NMR assignments. 2017. 11. 2. 187-191
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MISC (4):
  • 関山 直孝. TOPICS 生化学・分子生物学 TIA-1プリオン様ドメインのALS変異は高度に凝縮した病原体構造を誘起する. 医学のあゆみ. 2023. 285. 13. 1138-1139
  • 菅瀬 謙治, 関山 直孝, 吉田 紀生. 剪断力により誘起される相分離の機構解明-Elucidation of the Mechanism of Phase Separation Induced by Shear Force. 豊田研究報告 = Reports of Toyota Physical and Chemical Research Institute. 2020. 73. 202-205
  • SEKIYAMA Naotaka. Translation Control Regulated by the Change of eIF4E Interaction. Seibutsu Butsuri. 2016. 56. 3. 168-170
  • Kimura T., Sekiyama N., Sakamoto K., Morishima I., Ishimori K. 3P017 Contribution of dehydration to reduced cytochrome c folding revealed by high pressure measurements. Seibutsu Butsuri. 2004. 44. supplement. S194
Professional career (1):
  • 博士
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