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Applied Microbiology and Biotechnology|July 21, 2010
Lactococcal membrane-permeabilizing antimicrobial peptidesTakeshi Zendo, Fuminori Yoneyama, Kenji SonomotoBioengineered|April 17, 2015
Production of polyhydroxybutyrate and alginate from glycerol by Azotobacter vinelandii under nitrogen-free conditionsFuminori Yoneyama, Mayumi Yamamoto, Wataru Hashimoto, et al.Bioscience, Biotechnology, and Biochemistry|August 11, 2007
Characterization and structure analysis of a novel bacteriocin, lacticin Z, produced by Lactococcus lactis QU 14Shun Iwatani, Takeshi Zendo, Fuminori Yoneyama, et al.Bioscience, Biotechnology, and Biochemistry|January 9, 2010
Effect of a negatively charged lipid on membrane-lacticin Q interaction and resulting pore formationFuminori Yoneyama, Kouki Shioya, Takeshi Zendo, et al.International Microbiology : the Official Journal of the Spanish Society for Microbiology|October 25, 2013
A novel bleb-dependent polysaccharide export system in nitrogen-fixing Azotobacter vinelandii subjected to low nitrogen gas levelsWataru Hashimoto, Yukiko Miyamoto, Mayumi Yamamoto, et al.Waste Management (New York, N.Y.)|June 24, 2026
Rubber-iron interface separation using liquid nitrogen for material selective recycling and its mechanismMutsumi Sayama, Asako Narita, Tetsuma Nishioka, et al.Microbiology (Reading, England)|October 30, 2012
Identification of the genes involved in the secretion and self-immunity of lacticin Q, an unmodified leaderless bacteriocin from Lactococcus lactis QU 5Shun Iwatani, Fuminori Yoneyama, Shiho Miyashita, et al.Antimicrobial Agents and Chemotherapy|June 5, 2013
Lethal hydroxyl radical accumulation by a lactococcal bacteriocin, lacticin QMengqi Li, Fuminori Yoneyama, Nayu Toshimitsu, et al.Scientific Reports|April 15, 2025
Unveiling the effects of metabolites on the material properties of natural rubber by the integration of metabolomics and material characteristicsNobuyuki Hiraoka, Shunsuke Imai, Shintaro Shioyama, et al.Bioscience, Biotechnology, and Biochemistry|July 8, 2008
Complete covalent structure of nisin Q, new natural nisin variant, containing post-translationally modified amino acidsMasanori Fukao, Takayuki Obita, Fuminori Yoneyama, et al.Pageof 2