Susumu Nishiguchi
National Institute of Advanced Industrial Science and Technology
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Publication
Featured researches published by Susumu Nishiguchi.
Journal of Biological Chemistry | 2004
Hiroko Hoshi; Hiroaki Nakagawa; Susumu Nishiguchi; Kazumichi Iwata; Kenichi Niikura; Kenji Monde; Shin-Ichiro Nishimura
The Class I hyaluronan synthase (HAS) is a unique glycosyltransferase synthesizing hyaluronan (HA), a polysaccharide composed of GlcUA and GlcNAc, by using one catalytic domain that elongates two different monosaccharides. As for the synthetic mechanism, there are two alternative manners for the sugar elongation process. Some bacterial HASs add new sugars to the non-reducing end of the acceptor to grow polymers. On the other hand, some vertebrate enzymes seem to transfer sugars to the reducing end. Expression of vertebrate HASs as active and soluble proteins will accelerate further precise insight into mechanisms of sugar elongation reactions by natural HASs. Since large scale production of HA polymers and oligomers would become powerful tools both for basic studies and new biotechnology to create functional carbohydrates in medicinal purposes, advent of an efficient method for the expression of HASs in Escherichia coli is strongly expected. Here we communicate the first success of the production of recombinant human HAS2 proteins composed of only the catalytic region in E. coli as the active form. It was demonstrated that an engineered HAS2 expressed in E. coli exhibited significant activity to synthesize a mixture of HAS oligomers from 8-mer (HA8) to 16-mer (HA16). Engineered HAS2 prepared herein elongated sugars from exogenous tetrasaccharide to form polymers with a direction to the non-reducing end. According to the present results, large scale production of engineered recombinant HASs is to be performed using E. coli that will provide practical and economic advantages in manufacturing enzymes for use in the synthesis of various oligomeric HA molecules and their industrial applications.
Chemical Communications | 2001
Susumu Nishiguchi; Kuriko Yamada; Yoshitoshi Fuji; Shigeo Shibatani; Atushi Toda; Shin-Ichiro Nishimura
Recombinant beta-1,4-galactosyltranferase (beta 1,4-GalT) and alpha-2,6-sialytransferase (alpha 2,6-SiaT) immobilised covalently with activated Sepharose beads were employed for the practical synthesis of a trisaccharide derivative, Neu-5Ac alpha(2-->6)Gal beta(1-->4)GlcNAc beta-O-(CH2)6-NH2, on a water-soluble primer having GlcNAc residues through a alpha-chymotrypsin-sensitive linker.
Archive | 2001
Yoshihisa Kasukabe; Koichi Fujisawa; Susumu Nishiguchi; Yoshihiko Maekawa; Randy D. Allen
Archive | 1998
Susumu Nishiguchi; Yoshihiko Maekawa; Shinichiro Nishimura; Kuriko Yamada
Archive | 2001
Masaki Kurokochi; Susumu Nishiguchi; Shinichiro Nishimura; Shigeo Shibatani; Atsushi Toda; Kuriko Yamada; Chuan Lee Yuan; チュアン リー ユアン; 久里子 山田; 篤志 戸田; 滋郎 柴谷; 進 西口; 紳一郎 西村; 政樹 黒河内
Archive | 2000
Susumu Nishiguchi; Shinichiro Nishimura; Shigeo Shibatani; Atsushi Toda; Kuriko Yamada; 久里子 山田; 篤志 戸田; 滋郎 柴谷; 進 西口; 紳一郎 西村
Archive | 2004
Susumu Nishiguchi; Atsushi Toda; Shinichiro Nishimura; Kuriko Yamada
Archive | 2003
Awako Hoshi; Susumu Nishiguchi; Shinichiro Nishimura; 淡子 星; 進 西口; 紳一郎 西村
Archive | 2002
Kazuhito Fujiyama; Tatsuji Seki; Shinichiro Nishimura; Hiroaki Nakagawa; Susumu Nishiguchi
Archive | 2004
Susumu Nishiguchi; Atsushi Toda; Shinichiro Nishimura; Kuriko Yamada