Rchr
J-GLOBAL ID:201701017913355726   Update date: Jan. 30, 2024

Nishimoto Mamoru

ニシモト マモル | Nishimoto Mamoru
Affiliation and department:
Homepage URL  (1): http://www.naro.affrc.go.jp/nfri-neo/index.html
Research theme for competitive and other funds  (3):
  • 2021 - 2024 新たなサイレージ調製技術の確立に向けた特異的オリゴ糖代謝機構の解明
  • 2018 - 2021 Studies on biosynthetic and metabolic mechanism of loliose, an oligosaccharide present in ryegrass of the Gramineae.
  • 2013 - 2015 ビフィズス菌におけるラクトNビオースI資化遺伝子の発現解析及び代謝機構の解明
Papers (74):
  • Aina Gotoh, Masafumi Hidaka, Haruko Sakurama, Mamoru Nishimoto, Motomitsu Kitaoka, Mikiyasu Sakanaka, Shinya Fushinobu, Takane Katayama. Substrate recognition mode of a glycoside hydrolase family 42 β-galactosidase from Bifidobacterium longum subspecies infantis (BiBga42A) revealed by crystallographic and mutational analyses. Microbiome Research Reports. 2023. 2. 20
  • Shuntaro Machida, Katsuichi Saito, Mamoru Nishimoto, Motomitsu Kitaoka. Production of lacto-<i>N</i>-biose I using crude extracts of bifidobacterial cells. Journal of Applied Glycoscience. 2022. 69. 2. 15-21
  • Rika Hirano, Mikiyasu Sakanaka, Kazuto Yoshimi, Naohisa Sugimoto, Syogo Eguchi, Yuko Yamauchi, Misaki Nara, Shingo Maeda, Yuta Ami, Aina Gotoh, et al. Next-generation prebiotic promotes selective growth of bifidobacteria, suppressing Clostridioides difficile. Gut Microbes. 2021. 13. 1
  • Mamoru Nishimoto. Large scale production of lacto-N-biose I, a building block of type I human milk oligosaccharides, using sugar phosphorylases. Bioscience, biotechnology, and biochemistry. 2020. 84. 1. 17-24
  • Nam YW, Nishimoto M, Arakawa T, Kitaoka M, Fushinobu S. Structural basis for broad substrate specificity of UDP-glucose 4-epimerase in the human milk oligosaccharide catabolic pathway of Bifidobacterium longum. Scientific reports. 2019. 9. 1. 11081
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MISC (44):
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Patents (12):
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