Rchr
J-GLOBAL ID:202101008543543521   Update date: Sep. 29, 2024

Taguwa Shuhei

タグワ シュウヘイ | Taguwa Shuhei
Affiliation and department:
Research field  (1): Virology
Research keywords  (4): Quasispecies ,  flavivirus ,  Hsp70 ,  Chaperone
Papers (23):
  • Junki Hirano, Tsuyoshi Hayashi, Kouichi Kitamura, Yorihiro Nishimura, Hiroyuki Shimizu, Toru Okamoto, Kazuma Okada, Kentaro Uemura, Ming Te Yeh, Chikako Ono, et al. Enterovirus 3A protein disrupts endoplasmic reticulum homeostasis through interaction with GBF1. Journal of virology. 2024. 98. 7. e0081324
  • Itsuki Anzai, Junso Fujita, Chikako Ono, Yoichiro Kosaka, Yuki Miyamoto, Shintaro Shichinohe, Kosuke Takada, Shiho Torii, Shuhei Taguwa, Koichiro Suzuki, et al. Characterization of a neutralizing antibody that recognizes a loop region adjacent to the receptor-binding interface of the SARS-CoV-2 spike receptor-binding domain. Microbiology spectrum. 2024. 12. 4. e0365523
  • Rahmi Dianty, Junki Hirano, Itsuki Anzai, Yuta Kanai, Tsuyoshi Hayashi, Masae Morimoto, Chikako Kataoka-Nakamura, Sakura Kobayashi, Kentaro Uemura, Chikako Ono, et al. Electrolyzed hypochlorous acid water exhibits potent disinfectant activity against various viruses through irreversible protein aggregation. Frontiers in microbiology. 2023. 14. 1284274-1284274
  • Juan-Vicente Bou, Shuhei Taguwa, Yoshiharu Matsuura. Trick-or-Trap: Extracellular Vesicles and Viral Transmission. Vaccines. 2023. 11. 10
  • Mauricio Aguilar Rangel, Patrick T Dolan, Shuhei Taguwa, Yinghong Xiao, Raul Andino, Judith Frydman. High-resolution mapping reveals the mechanism and contribution of genome insertions and deletions to RNA virus evolution. Proceedings of the National Academy of Sciences of the United States of America. 2023. 120. 31. e2304667120
more...
MISC (1):
  • 田鍬修平, 田鍬修平, DIANTY Rahmi, DIANTY Rahmi, 安齋樹, 金井裕太, 成山満寿, 成山満寿, 稲葉ひかる, 稲葉ひかる, et al. Hypochlorous acid water disintegrates various pathogenic virus particles via protein aggregation. 日本分子生物学会年会プログラム・要旨集(Web). 2022. 45th
Lectures and oral presentations  (3):
  • A campaign targeting a conserved Hsp70 binding site uncovershow subcellular localization is linked to distinct biological activities
    (HCV 2022 2022)
  • A campaign targeting a conserved Hsp70 binding site uncovershow subcellular localization is linked to distinct biological activities
    (American society of virology 2022 2022)
  • A campaign targeting a conserved Hsp70 binding site uncovers how subcellular localization is linked to distinct biological activities
    (2021)
Association Membership(s) (1):
American Society for Virology
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