Rchr
J-GLOBAL ID:201901005220531306   Update date: May. 08, 2024

Sekine Hiroki

セキネ ヒロキ | Sekine Hiroki
Affiliation and department:
Research field  (1): Molecular biology
Research keywords  (4): 低酸素 ,  遺伝子発現 ,  翻訳後修飾 ,  転写因子
Research theme for competitive and other funds  (7):
  • 2023 - 2026 Elucidation of renoprotective effects by pharmacological intervention into oxygen metabolism, using living renal cells from urine of diabetic kidney disease patients
  • 2023 - 2026 新規酸素感知機構PNPO-PLPシステムによる生体内低酸素への応答・適応機構の解明
  • 2023 - 2026 認知症におけるオートファジー障害の病態解明とPADREによる超早期画像診断法の開発
  • 2022 - 2025 Therapeutic strategy against infectious and inflammatory diseases by targeting master regulators of mast cells and eosinophils
  • 2020 - 2023 O-GlcNAc修飾とその認識機構を介した生体恒常性維持機構の解析
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Papers (30):
  • Hiroki Sekine et al. PNPO-PLP Axis Senses Prolonged Hypoxia in Macrophages by Regulating Lysosomal Activity. Nature Metabolism. 2024
  • Hayasaka K, Ohkouchi S, Saito-Koyama R, Suzuki Y, Okazaki K, Sekine H, Watanabe T, Motohashi H, Okada Y. Aging Exacerbates Murine Lung Ischemia-Reperfusion Injury by Excessive Inflammation and Impaired Tissue Repair Response. American Journal of Transplantation. 2023. S1600-6135
  • Haruna Takeda, Shohei Murakami, Zun Liu, Tomohiro Sawa, Masatomo Takahashi, Yoshihiro Izumi, Takeshi Bamba, Hideyo Sato, Takaaki Akaike, Hiroki Sekine, et al. Sulfur metabolic response in macrophage limits excessive inflammatory response by creating a negative feedback loop. Redox biology. 2023. 65. 102834-102834
  • Haruna Takeda, Yoshihiro Nakajima, Teruaki Yamaguchi, Itaru Watanabe, Shoko Miyoshi, Kodai Nagashio, Hiroki Sekine, Hozumi Motohashi, Hajime Yano, Junya Tanaka. The anti-inflammatory and anti-oxidative effect of a classical hypnotic bromovalerylurea mediated by the activation of NRF2. Journal of biochemistry. 2023. 174. 2. 131-142
  • Md Morshedul Alam, Akihiro Kishino, Eunkyu Sung, Hiroki Sekine, Takaaki Abe, Shohei Murakami, Takaaki Akaike, Hozumi Motohashi. Contribution of NRF2 to sulfur metabolism and mitochondrial activity. Redox biology. 2023. 60. 102624-102624
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MISC (6):
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Lectures and oral presentations  (11):
  • PNPO-PLPシステムによる低酸素感知機構.
    (第46回日本分子生物学会年会. 2023)
  • Molecular oxygen sensing mechanism through supersulfides in prolonged hypoxia
    (2023)
  • Molecular oxygen sensing mechanism in prolonged hypoxia
    (2023)
  • 代謝物を介した新規低酸素感知システム
    (第9回 がんと代謝研究会 2023)
  • 低酸素における代謝変換を介した炎症応答制御
    (第95回日本生化学会大会 2022)
more...
Professional career (1):
  • Ph.D (University of Tsukuba)
Association Membership(s) (1):
THE JAPANESE BIOCHEMICAL SOCIETY
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