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ACS Chemical Biology|January 10, 2022
Differential Biosynthesis and Roles of Two Ferrichrome-Type Siderophores, ASP2397/AS2488053 and Ferricrocin, in Acremonium persicinumYoshiki Asai, Tomoshige Hiratsuka, Miyu Ueda, et al.Chemistry & Biology|April 29, 2014
Genome mining reveals a minimum gene set for the biosynthesis of 32-membered macrocyclic thiopeptides lactazolesShohei Hayashi, Taro Ozaki, Shumpei Asamizu, et al.The Journal of Antibiotics|January 30, 2007
Absolute configuration and antitumor activity of myxochelin A produced by Nonomuraea pusilla TP-A0861Satoshi Miyanaga, Takamasa Obata, Hiroyasu Onaka, et al.Journal of Natural Medicines|March 22, 2024
A new 3,4-seco-isopimarane and three new isopimarane diterpenoids from Kaempferia champasakensis collected from Vietnam and their cytotoxic activitiesKiep Minh Do, Shotaro Hoshino, Takeshi Kodama, et al.Chemical & Pharmaceutical Bulletin|June 5, 2018
Mirilactams C-E, Novel Polycyclic Macrolactams Isolated from Combined-Culture of Actinosynnema mirum NBRC 14064 and Mycolic Acid-Containing BacteriumShotaro Hoshino, Masahiro Ozeki, Chin Piow Wong, et al.The Journal of Antibiotics|March 16, 2018
Umezawamides, new bioactive polycyclic tetramate macrolactams isolated from a combined-culture of Umezawaea sp. and mycolic acid-containing bacteriumShotaro Hoshino, Chin Piow Wong, Masahiro Ozeki, et al.ACS Chemical Biology|December 2, 2024
Biosynthetic Incorporation of Non-native Aryl Acid Building Blocks into Peptide Products Using Engineered Adenylation DomainsFumihiro Ishikawa, Maya Nohara, Akimasa Miyanaga, et al.Organic Letters|July 31, 2010
Alchivemycin A, a bioactive polycyclic polyketide with an unprecedented skeleton from Streptomyces spYasuhiro Igarashi, Youngju Kim, Yasuko In, et al.Nature Communications|February 7, 2017
Dissection of goadsporin biosynthesis by in vitro reconstitution leading to designer analogues expressed in vivoTaro Ozaki, Kona Yamashita, Yuki Goto, et al.Chemical & Pharmaceutical Bulletin|June 12, 2024
Three neo-Clerodane Diterpenoids from Tinospora cordifolia Stems and Their Arginase Inhibitory ActivitiesNhat Nam Hoang, Shotaro Hoshino, Takeshi Kodama, et al.Pageof 9