Rchr
J-GLOBAL ID:201301067393347340   Update date: Oct. 21, 2024

Minami Atsushi

ミナミ アツシ | Minami Atsushi
Affiliation and department:
Homepage URL  (1): http://www.chemistry.titech.ac.jp/~minami/
Research field  (1): Molecular biochemistry
Research keywords  (11): 生合成 ,  ラサロシド ,  エポキシ化酵素 ,  ポリエーテル ,  エポキシド加水分解酵素 ,  麹菌 ,  ペプチド合成酵素 ,  大腸菌 ,  全生合成 ,  化学酵素合成 ,  抗腫瘍性物質
Research theme for competitive and other funds  (14):
  • 2022 - 2026 糸状菌由来ポリケタイド合成酵素の「系統学的分類則」と「立体制御則」の提案と検証
  • 2023 - 2025 人工マルチモジュラーシステムの構築を基軸としたポリケタイド鎖の酵素合成
  • 2023 - 2025 遺伝子情報に基づく天然物の化学構造推定
  • 2019 - 2022 Elucidation of structural diversification mechanism of natural product focusing on gene duplication
  • 2019 - 2022 Exploring new biologically active metabolites using unidentified gene clusters from Basidiomycota genomes
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Papers (86):
  • Naoya Saito, Takuya Katayama, Atsushi Minami, Hideaki Oikawa, Jun-Ichi Maruyama. Versatile filamentous fungal host highly-producing heterologous natural products developed by genome editing-mediated engineering of multiple metabolic pathways. Communications biology. 2024. 7. 1. 1263-1263
  • Takuya Katayama, Yulu Jiang, Taro Ozaki, Hideaki Oikawa, Atsushi Minami, Jun-Ichi Maruyama. Subcellular compartmentalized localization of transmembrane proteins essential for production of fungal cyclic peptide cyclochlorotine. Bioscience, biotechnology, and biochemistry. 2024
  • Yoshiro Sato, Xinge Shi, Ying Ye, Saori Domon, Junya Takino, Taro Ozaki, Chengwei Liu, Hideaki Oikawa, Atsushi Minami. Bioinformatics-Guided Reconstitution of Biosynthetic Machineries of Fungal Eremophilane Sesquiterpenes. ACS chemical biology. 2024
  • Atsushi Minami. Controlled Chemical Construction in Nature: Unified Biogenesis Accounting for Synthesis of Fungal Dimeric Anhydrides. Bulletin of the Chemical Society of Japan. 2023. 96. 11. 1216-1223
  • Kei Hiruma, Seishiro Aoki, Junya Takino, Takeshi Higa, Yuniar Devi Utami, Akito Shiina, Masanori Okamoto, Masami Nakamura, Nanami Kawamura, Yoshihiro Ohmori, et al. A fungal sesquiterpene biosynthesis gene cluster critical for mutualist-pathogen transition in Colletotrichum tofieldiae. Nature communications. 2023. 14. 1. 5288-5288
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MISC (106):
  • 深谷充功, 尾関美衣菜, 尾崎太郎, 永木愛一郎, 南篤志, 及川英秋. Total biosynthesis of the basidiomycete derived antitumor substance melleolide (2). 日本化学会春季年会講演予稿集(Web). 2023. 103rd
  • 瀧野純矢, 山本真太郎, 尾崎太郎, 永木愛一郎, 南篤志, 及川英秋. Mechanistic Studies on the Late-Stage Modification Enzymes in the Biosynthesis of Phomoidride B. 日本化学会春季年会講演予稿集(Web). 2023. 103rd
  • 小林瑞季, 尾崎太郎, 橋本勝, 永木愛一郎, 南篤志, 及川英秋. Exploration and functional analysis of sesquiterpene biosynthetic genes based on comprehensive analysis of terpene synthase. 日本化学会春季年会講演予稿集(Web). 2023. 103rd
  • 瀧野純矢, 山本真太郎, 尾崎太郎, 永木愛一郎, 南篤志, 及川英秋, 及川英秋. Total Biosynthesis of Phomoidride B: Identification and Characterization of Methyltransferase Catalyzing Bicyclic Ketal Formation. 日本農芸化学会大会講演要旨集(Web). 2023. 2023
  • 大和田ゆうき, 澤田光平, 荒井彩花, 田所高志, 南篤志, 前仲勝実, 久米田博之, 姚閔, 及川英秋, 尾瀬農之, et al. 世界初IDP酵素の検証. 日本結晶学会年会講演要旨集. 2022. 2022
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Books (6):
  • New Tide of Natural Product Chemistry
    2023
  • 発酵・醸造食品の最前線II(食品)
    シーエムシー出版 2022
  • Comprehensive Natural Products III
    2020
  • Comprehensive Natural Products III
    2020
  • 酵母菌・麹菌・乳酸菌の産業応用展開
    シーエムシー出版 2018
more...
Education (2):
  • 2002 - 2007 Tokyo Institute of Technology Graduate School of Science and Engineering Department of Chemistry
  • 1998 - 2002 Tokyo Institute of Technology School of Science Dept. of Chemistry
Professional career (1):
  • 博士(理学) (東京工業大学)
Work history (5):
  • 2024/10 - 現在 Institute of Sciecne Tokyo
  • 2024/04 - 2024/09 Tokyo Institute of Technology
  • 2015/07 - 2024/03 Hokkaido University
  • 2008/04 - 2015/06 Hokkaido University
  • 2007/04 - 2008/03 Toyama Prefectural University
Awards (7):
  • 2023/03 - The Excellent Paper Award Published in Bioscience, Biotechnology, & Biochemistry Structure and biosynthesis of ribosomal lipopeptide antibiotic albopeptins.
  • 2020/03 - The Excellent Paper Award Published in Bioscience, Biotechnology, & Biochemistry Biosynthetic study of conidiation-inducing factor conidiogenone: Heterologous production and cyclization mechanism of a key bifunctional diterpene synthase
  • 2017/01 - 北海道大学 平成28年度北海道大学研究総長賞奨励賞
  • 2016/03 - 平成27年度日本化学会進歩賞
  • 2012/09 - 第54回天然有機化合物討論会奨励賞(口頭発表)
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Association Membership(s) (2):
JAPAN SOCIETY FOR BIOSCIENCE, BIOTECHNOLOGY, AND AGROCHEMISTRY ,  THE CHEMICAL SOCIETY OF JAPAN
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