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Journal of Natural Products|October 28, 2006
Gymnastatins F-H, cytostatic metabolites from the sponge-derived fungus Gymnascella dankaliensisTaro Amagata, Katsuhiko Minoura, Atsushi NumataRSC Advances|February 6, 2023
Experimental evidence for CH⋯π interaction-mediated stabilization of the square form in phenylglycine-incorporated ascidiacyclamideAkiko Asano, Katsuhiko Minoura, Takeshi Yamada, et al.The Journal of Antibiotics|July 10, 2007
Cell-adhesion inhibitors produced by a sea hare-derived Periconia spTakeshi Yamada, Katsuhiko Minoura, Reiko Tanaka, et al.Journal of Peptide Science : an Official Publication of the European Peptide Society|February 10, 2016
Conformational transformation of ascidiacyclamide analogues induced by incorporating enantiomers of phenylalanine, 1-naphthylalanine or 2-naphthylalanineAkiko Asano, Katsuhiko Minoura, Takeshi Yamada, et al.The Journal of Antibiotics|August 19, 2006
Cell-adhesion inhibitors produced by a sea hare-derived Periconia sp. II. Absolute stereostructures of peribysins H and ITakeshi Yamada, Katsuhiko Minoura, Reiko Tanaka, et al.Journal of Natural Products|February 21, 2008
Gymnastatins and dankastatins, growth inhibitory metabolites of a gymnascella species from a Halichondria spongeTaro Amagata, Makoto Tanaka, Takeshi Yamada, et al.Chemical & Pharmaceutical Bulletin|September 29, 2024
The Impact of Adding a Cationic Metal Salt and Curcumin to Monoammonium Glycyrrhizic Acid on Its Solubilizing Capacity and GelationKenta Ando, Hiromasa Uchiyama, Katsuhiko Minoura, et al.Bioorganic & Medicinal Chemistry|November 4, 2017
Conformational properties of ascydiacyclamide analogues with cyclic α-amino acids instead of oxazoline residuesAkiko Asano, Shohei Numata, Takeshi Yamada, et al.Organic & Biomolecular Chemistry|July 16, 2004
Peribysins A-D, potent cell-adhesion inhibitors from a sea hare-derived culture of Periconia speciesTakeshi Yamada, Masashi Iritani, Katsuhiko Minoura, et al.Chemical Communications (Cambridge, England)|July 18, 2002
Helical structure of heterochiral RNA dimers: helical sense of ApA is determined by chirality of 3'-end residueHidehito Urata, Makiko Go, Norihiko Ohmoto, et al.Pageof 6