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Dive into the research topics where Shigenobu Mitsuzawa is active.

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Featured researches published by Shigenobu Mitsuzawa.


Scientific Reports | 2017

Alanine substitution in cellobiohydrolase provides new insights into substrate threading

Shigenobu Mitsuzawa; Maiko Fukuura; Satoru Shinkawa; Keiichi Kimura; Tadaomi Furuta

The glycoside hydrolase family 7 (GH7) member cellobiohydrolase (CBH) is a key enzyme that degrades crystalline cellulose, an important structural component of plant cell walls. As GH7 CBH is a major component in the enzyme mixture used to degrade biomass into fermentable glucose in biorefineries, enhancing its catalytic activity will significantly impact development in this field. GH7 CBH possesses a catalytic tunnel through which cellulose substrates are threaded and hydrolysed. Despite numerous studies dissecting this processive mechanism, the role of amino acid residues in the tunnel remains not fully understood. Herein, we examined the respective contributions of nine amino acid residues in the catalytic tunnel of GH7 CBH from Talaromyces cellulolyticus by substitution with alanine. As a result, N62A and K203A mutants were found to possess significantly higher cellulase activities than wild type. Molecular dynamics simulations showed that the N62 residue interacted strongly with the cellulose substrate, impeding threading, while the N62A mutant allowed cellulose to proceed more smoothly. Furthermore, the W63 residue was observed to facilitate twisting of the cellulose substrate in our simulations. This study helps elucidate cellulose threading and provides insight into biomass hydrolysis.


Archive | 2009

APPARATUS FOR PRETREATMENT FOR SACCHARIFICATION OF LIGNOCELLULOSE BIOMASS

Tsuyoshi Baba; Shigenobu Mitsuzawa


Archive | 2012

SACCHARIFYING ENZYME COMPOSITION AND METHOD FOR PRODUCING SACCHARIFIED SOLUTION USING THE SAME

Maiko Fukuura; Shigenobu Mitsuzawa; Migiwa Takeda; Takeshi Ara; Daisuke Shibata


Archive | 2011

Process for producing saccharified solution of lignocellulosic biomass

Shigenobu Mitsuzawa; Minako Onodera; Maiko Fukuura; Koh Shikata; Yasuhiro Kashima


Archive | 2011

METHOD FOR PRODUCING SACCHARIFIED SOLUTION

Shigenobu Mitsuzawa


Archive | 2017

Base sequence for protein expression and method for producing protein using same

Satoru Shinkawa; Shigenobu Mitsuzawa; Maiko Tanaka; Masayuki Machida; Hiroko Hagiwara; Hideaki Koike; Mahoko Kuninaga


Archive | 2017

METHOD FOR PRODUCING HIGHLY ACTIVE CELLOBIOHYDROLASE AND HIGHLY ACTIVE CELLOBIOHYDROLASE

Shigenobu Mitsuzawa; Keiichi Kimura; Maiko Tanaka; Satoru Shinkawa


Archive | 2016

ASPERGILLUS MUTANT STRAIN AND TRANSFORMANT THEREOF

Satoru Shinkawa; Shigenobu Mitsuzawa; Maiko Tanaka; Tomohiro Imai


Archive | 2016

Aspergillus-mutantenstamm und transformant davon

Satoru Shinkawa; Shigenobu Mitsuzawa; Maiko Tanaka; Tomohiro Imai


Archive | 2015

ASPERGILLUS MUTANT STRAIN

Satoru Shinkawa; Shigenobu Mitsuzawa; Maiko Tanaka

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Hideaki Koike

National Institute of Advanced Industrial Science and Technology

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Hiroko Hagiwara

National Institute of Advanced Industrial Science and Technology

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Masayuki Machida

National Institute of Advanced Industrial Science and Technology

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Tadaomi Furuta

Tokyo Institute of Technology

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