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Difference between revisions of "User:Masahiro Nakajima"
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* [[GH3]] β-Glucosidases <cite>Nakajima2012a Nakajima2016 Ishiguro2017</cite> | * [[GH3]] β-Glucosidases <cite>Nakajima2012a Nakajima2016 Ishiguro2017</cite> | ||
* [[GH16]] β-1,3-Glucanase <cite>Nakajima2012b</cite> | * [[GH16]] β-1,3-Glucanase <cite>Nakajima2012b</cite> | ||
| − | * [[GH35]] β-1,2- | + | * [[GH35]] β-1,2-Glucosyltransglycosylase <cite>Kobayashi2022</cite> |
* [[GH38]] α-Mannosidase <cite>Nakajima2003</cite> | * [[GH38]] α-Mannosidase <cite>Nakajima2003</cite> | ||
* [[GH57]] 4-α-Glucanotransferase <cite>Nakajima2004</cite> | * [[GH57]] 4-α-Glucanotransferase <cite>Nakajima2004</cite> | ||
Revision as of 16:33, 24 January 2024
Masahiro Nakajima received his Ph.D. from the Graduate School of Agricultural and Life Science, The University of Tokyo in 2006. He joined the group of Dr. Motomitsu Kitaoka as a postdoctoral fellow (2006-2010). He moved to Iwate Biotechnology Research Center as a researcher (2010-2012). He is an assistant professor in Taguchi Laboratory at Department of Applied Biological Science, Tokyo University of Science (2012-). His research currently focuses on structures and functions of carbohydrate-active enzymes acting on unique sugar chains such as β-1,2-glucan. He acts as a Responsible Curator of Glycoside Hydrolase Families GH144, GH162 and GH186. He determined the functions and/or crystal structures of
- GH3 β-Glucosidases [1, 2, 3]
- GH16 β-1,3-Glucanase [4]
- GH35 β-1,2-Glucosyltransglycosylase [5]
- GH38 α-Mannosidase [6]
- GH57 4-α-Glucanotransferase [7]
- GH94 1,2-β-Oligoglucan phosphorylases [8, 9]
- GH112 D-Galactosyl-β-1,4-L-rhamnose phosphorylase and β-1,3-galactosyl-N-acetylhexosamine phosphorylases [10, 11, 12, 13]
- GH144 Bacterial β-1,2-Glucanases [14, 15]
- GH162 Fungal β-1,2-Glucanase [16]
- GH186 E. coli β-1,2-Glucanase [17]
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- Motouchi S, Kobayashi K, Nakai H, and Nakajima M. (2023). Identification of enzymatic functions of osmo-regulated periplasmic glucan biosynthesis proteins from Escherichia coli reveals a novel glycoside hydrolase family. Commun Biol. 2023;6(1):961. DOI:10.1038/s42003-023-05336-6 |