Session Details

[27V02-am]遺伝子・生合成②

Sat. Mar 27, 2021 10:36 AM - 12:00 PM JST
Sat. Mar 27, 2021 1:36 AM - 3:00 AM UTC
[Room V02] Oral Presentation 2 Online
座長:浅井 禎吾(東北大院薬)、恒松 雄太(静岡県大薬)

[27V02-am08]Mechanistic studies on the aryl-coupling reaction involved in the actinorhodin biosynthesis (4th report)

○Makoto Hashimoto1, Susumu Watari1, Takaaki Taguchi2, Kazuki Ishikawa1, Takuya Kumamoto3, Susumu Okamoto4, Koji Ichinose1 (1. Fac. Pharm., Musashino Univ., 2. NIHS, 3. Grad. Sch. Biomed. Health Sci., Hiroshima Univ., 4. NARO)

[27V02-am09S]Mechanistic studies on the aryl-coupling reaction involved in the actinorhodin biosynthesis (5th report)

○Susumu Watari1, Makoto Hashimoto1, Takaaki Taguchi2, Kazuki Ishikawa1, Takuya Kumamoto3, Susumu Okamoto4, Koji Ichinose1 (1. Fac. Pharm., Musashino Univ., 2. NIHS, 3. Grad. Sch. Biomed. Health Sci., Hiroshima Univ., 4. NARO)

[27V02-am10]Functional analysis of stereospecific enoyl reductase involved in actinorhodin biosynthesis (2nd report)

○Kazuki Ishikawa1,2, Makoto Hashimoto1,2, Koji Ichinose1,2 (1. Fac. Pharm. Musashino Univ., 2. Research Institute of Pharm. Sci., Musashino Univ.)

[27V02-am11S]Metabolite productivity of alkaloid-producing Pichia pastoris and Escherichia coli in Pichia pastoris medium

○Miya Urui1, Yasuyuki Yamada1, Yoshito Ikeda1, Hiromichi Minami2, Fumihiko Sato3,4, Nobukazu Shitan1 (1. Kobe Pharm. Univ., 2. Ishikawa Pref. Univ., 3. Grad. Sch. Bio., Kyoto Univ., 4. Grad. Sch. Sci., Osaka Pref. Univ.)

[27V02-am12S]Using bacterial extracellular vesicles to activate cryptic biosynthetic gene clusters

○Rio Saeki1, Aya Yoshimura1, Kenichi Matsuda1, Toshiyuki Wakimoto1 (1. Fac. of Pharm. Sci, Hokkaido Univ.)

[27V02-am13S]Intermolecular peptide ligation catalyzed by Nsm16, a new member of PBP-type thioesterase

○Masakazu Kobayashi1, Yuito Yamada1, Chisato Tachikawa, Kenichi Matsuda1, Toshiyuki Wakimoto1 (1. Grad. Pharm. Sci., Hokkaido Univ)

[27V02-am14]Genome mining led to the discovery of a new N-N bond-containing natural product, actinopyridazinone and its unique biosynthetic pathway.

○Kenichi Matsuda1, Satoko Akiyama1, Kuga Arima1, Toshiyuki Wakimoto1 (1. Grad. Sch. Pharm. Sci., Hokkaido Univ.)