Rchr
J-GLOBAL ID:200901098195723670   Update date: Oct. 24, 2024

Hongo Kunihiro

Hongo Kunihiro
Research field  (2): Biophysics ,  Functional biochemistry
Research keywords  (2): タンパク質工学 ,  Protein Engineering
Research theme for competitive and other funds  (6):
  • 2001 - 2011 分子シャペロンに関する研究
  • 2001 - 2011 Study of molecular chaperone
  • 2002 - 2006 Protein conformational changes and molecular chaperone
  • 2003 - 2005 Molecular study on large conformational changes of protein that relates biofunction and diseases
  • 分子シャペロンに関する研究
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Papers (40):
  • Hanae Yamamoto, Rio Matsumura, Miho Nakashima, Mayuka Adachi, Kenjirou Ogawa, Kunihiro Hongo, Tomohiro Mizobata, Yasushi Kawata. Effects of the Polyphenols Delphinidin and Rosmarinic Acid on the Inducible Intra-cellular Aggregation of Alpha-Synuclein in Model Neuron Cells. Applied Biochemistry and Biotechnology. 2023
  • Naoya Fukui, Hanae Yamamoto, Moe Miyabe, Yuki Aoyama, Kunihiro Hongo, Tomohiro Mizobata, Ichiro Kawahata, Yasushi Yabuki, Yasuharu Shinoda, Kohji Fukunaga, et al. An α-synuclein decoy peptide prevents cytotoxic α-synuclein aggregation caused by fatty acid binding protein 3. The Journal of biological chemistry. 2021. 296. 100663-100663
  • Kenjirou Ogawa, Ayumi Ishii, Aimi Shindo, Kunihiro Hongo, Tomohiro Mizobata, Tetsuya Sogon, Yasushi Kawata. Spearmint Extract Containing Rosmarinic Acid Suppresses Amyloid Fibril Formation of Proteins Associated with Dementia. Nutrients. 2020. 12. 11
  • Hanae Yamamoto, Naoya Fukui, Mayuka Adachi, Eiichi Saiki, Anna Yamasaki, Rio Matsumura, Daichi Kuroyanagi, Kunihiro Hongo, Tomohiro Mizobata, Yasushi Kawata. Human Molecular Chaperone Hsp60 and Its Apical Domain Suppress Amyloid Fibril Formation of α-Synuclein. International Journal of Molecular Sciences. 2019. 21. 1. 47
  • 小川 健二郎, 石井 歩美, 進藤 愛未, 本郷 邦広, 溝端 知宏, 荘厳 哲哉, 河田 康志. 認知症の原因となるアミロイド線維形成を抑制するスペアミント由来ロスマリン酸. 日本栄養・食糧学会大会講演要旨集. 2019. 73回. 253-253
more...
MISC (21):
  • Toshifumi Mizuta, Tatsuya Uemura, Kunihiro Hongo, Yasushi Kawata, Tomohiro Mizobata. Study of E. coli GroEL Using Stopped-Flow Analysis And Circular Permutation. PROTEIN SCIENCE. 2014. 23. 243-244
  • Tomohiro Mizobata, Shuhei Fusa, Masashi Ikeda, Kunihiro Hongo, Yasushi Kawata. Curious Characteristics Of A Mutant Chaperonin GroeL With Multiple Cysteines In The Central Cavity. PROTEIN SCIENCE. 2014. 23. 242-242
  • 野井健太郎, 北村文, 平井秀憲, 本郷邦広, 溝端知宏, 河田康志. グループII型シャペロニンによるSup35NMのアミロイド線維形成抑制. 日本蛋白質科学会年会プログラム・要旨集. 2010. 10th
  • Yasushi Kawata, Kodai Machida, Akane Kono-Okada, Kunihiro Hongo, Tomohiro Mizobata. Identification of the functionally critical amino acid segment and its role in the flexible C-terminal region of the chaperonin GroEL. J. Proteomics & Bioinformatics. 2008. 2. 2. 266
  • 野井健太郎, 野井健太郎, 平井秀憲, 平井秀憲, 本郷邦広, 本郷邦広, 溝端知宏, 溝端知宏, 河田康志, 河田康志. Thermoplasma acidophilum由来単量体シャペロニンの新規ヌクレオチド加水分解活性. 日本蛋白質科学会年会プログラム・要旨集. 2007. 7th
more...
Professional career (1):
  • (BLANK) (Tottori University)
Association Membership(s) (2):
日本分子生物学会 ,  日本生化学会
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