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Biophysics (Nagoya-Shi, Japan)|November 19, 2016
Characterization of the flagellar motor composed of functional GFP-fusion derivatives of FliG in the Na+-driven polar flagellum of Vibrio alginolyticusMasafumi Koike, Noriko Nishioka, Seiji Kojima, et al.
Journal of Bacteriology|August 31, 2016
HubP, a Polar Landmark Protein, Regulates Flagellar Number by Assisting in the Proper Polar Localization of FlhG in Vibrio alginolyticusNorihiro Takekawa, Soojin Kwon, Noriko Nishioka, et al.
Microbiology and Immunology|January 6, 2011
Conversion of mono-polar to peritrichous flagellation in Vibrio alginolyticusMasaru Kojima, Noriko Nishioka, Akiko Kusumoto, et al.
Journal of Bacteriology|December 11, 2012
A novel dnaJ family gene, sflA, encodes an inhibitor of flagellation in marine Vibrio speciesMaya Kitaoka, Takehiko Nishigaki, Kunio Ihara, et al.
Peerj|March 22, 2024
Deciphering the genomes of motility-deficient mutants of Vibrio alginolyticus 138-2Kazuma Uesaka, Keita Inaba, Noriko Nishioka, et al.
Journal of Biochemistry|June 11, 2013
Mutation in the a-subunit of F(1)F(O)-ATPase causes an increased motility phenotype through the sodium-driven flagella of VibrioHiroyuki Terashima, Takashi Terauchi, Kunio Ihara, et al.
Microbiology (Reading, England)|March 13, 2021
Characterization of polar-flagellar-length mutants in Vibrio alginolyticusMasaaki Furuno, Tatsuo Atsumi, Taku Yamada, et al.
Modern Rheumatology Case Reports|August 9, 2022
Rheumatologic manifestations with elevated levels of IL-6, IL-17A, and IL-23 in a patient with scurvyMasahiro Ueki, Keita Sakamoto, Noriko Nishioka, et al.
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