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Featured researches published by Ken-ichi Fuhshuku.


Journal of Biotechnology | 2011

Synthesis of (R)-β-nitro alcohols catalyzed by R-selective hydroxynitrile lyase from Arabidopsis thaliana in the aqueous–organic biphasic system

Ken-ichi Fuhshuku; Yasuhisa Asano

Both enantiomers of β-nitro alcohols are versatile chiral building blocks. However, their synthesis using enzymes as catalysts has received little attention, with the exception of (S)-β-nitro alcohols produced in a reaction catalyzed by an S-selective hydroxynitrile lyase (HNL) from Hevea brasiliensis (HbHNL). An R-selective HNL containing an α/β-hydrolase fold from the noncyanogenic plant Arabidopsis thaliana (AtHNL) accepts nitromethane (MeNO₂) as a donor in a reaction with aromatic aldehydes to yield (R)-β-nitro alcohols (Henry reaction; nitro aldol reaction). This reaction proceeded in an aqueous-organic biphasic system. The organic solvent giving the highest enantioselectivity was n-butyl acetate (AcOBu) with an optimum aqueous phase content of 50% (v/v). This is the first example of the R-HNL-catalyzed synthesis of (R)-β-nitro alcohols.


Journal of Biotechnology | 2011

S-selective hydroxynitrile lyase from a plant Baliospermum montanum: Molecular characterization of recombinant enzyme

Mohammad Dadashipour; Mizue Yamazaki; Kazumi Momonoi; Ken’ichirou Tamura; Ken-ichi Fuhshuku; Yurina Kanase; Etsuzoh Uchimura; Guan Kaiyun; Yasuhisa Asano

A novel S-hydroxynitrile lyase (HNL) was purified from leaves of a plant, Baliospermum montanum, by ammonium sulfate fractionation and column chromatographies. Full-length cDNA and genomic DNA were cloned and sequenced. The latter contained two introns and one ORF encoding a 263-residue protein (subunit: 29.5 kDa). The hnl gene was expressed in Escherichia coli and the enzyme was characterized including detailed kinetic studies of 20 substrates for (S)-cyanohydrin synthesis. The enzyme exhibited the highest specific activity (178 U/mg), k(cat) (98/s) and k(cat)/K(m) ratio for piperonal. k(cat)/K(m) ratio for aromatic aldehydes was much larger than those of aliphatic aldehydes and ketones. It was strongly inhibited by AgNO₃, PMSF, phenol and methyl ethyl ketone, showed an optimum at pH 5, while having activity at range of 4-6.5. It exhibited stability at wide pH range 2.4-11, the highest activity at 20 °C, being active at 0-65 °C. The enzyme showed variations in residues involved in substrate pocket and substrate entrance channel compared to other S-selective HNLs, based on a model was built. C-terminal short truncations provided more enzyme production. Gel filtration revealed a 60-65 kDa molecular mass for this non-FAD enzyme and its C-terminally truncated forms using three buffer compositions, indicating dimeric structures.


Enzyme Research | 2010

A Simple Enzymatic Method for Production of a Wide Variety of D-Amino Acids Using L-Amino Acid Oxidase from Rhodococcus sp. AIU Z-35-1

Kimiyasu Isobe; Hiroshi Tamauchi; Ken-ichi Fuhshuku; Shouko Nagasawa; Yasuhisa Asano

A simple enzymatic method for production of a wide variety of D-amino acids was developed by kinetic resolution of DL-amino acids using L-amino acid oxidase (L-AAO) with broad substrate specificity from Rhodococcus sp. AIU Z-35-1. The optimum pH of the L-AAO reaction was classified into three groups depending on the L-amino acids as substrate, and their respective activities between pH 5.5 and 8.5 accounted for more than 60% of the optimum activity. The enzyme was stable in the range from pH 6.0 to 8.0, and approximately 80% of the enzyme activity remained after incubation at 40°C for 60 min at pH 7.0. D-Amino acids such as D-citrulline, D-glutamine, D-homoserine or D-arginine, which are not produced by D-aminoacylases or D-hydantoinases, were produced from the racemic mixture within a 24-hr reaction at 30°C and pH 7.0. Thus, the present method using L-AAO was versatile for production of a wide variety of D-amino acids.


Bioscience, Biotechnology, and Biochemistry | 2012

Trans Fatty Acid Intake and Serum Cholesterol Levels in Young Japanese Women

Hiroyuki Takeuchi; Eriko Ito; Tetsuhisa Tomioka; Eiichi Tabuchi; Ken-ichi Fuhshuku; Yasuhisa Asano

There are very limited data concerning the influence of low-level trans fatty acid (TFA) intake on blood lipid levels. In this study, correlation of total and diene TFA intake with serum cholesterol levels was studied in young Japanese women. The mean intakes of total and diene TFAs were 0.36% and 0.05% of energy, respectively. There was a significant correlation between total fat intake and TFA intake. TFA intake was significantly correlated with erythrocyte TFA content. Total TFA intake was not correlated with total, LDL- or HDL-cholesterol levels. No correlatuon was found between diene TFA intake and cholesterol level. Total and diene TFA intake were not correlated with hemoglobin A1c or C-reactive protein levels. These results suggest that the average TFA intake of young Japanese women does not adversely affect serum cholesterol levels.


Bioscience, Biotechnology, and Biochemistry | 2015

A novel S-enantioselective amidase acting on 3,3,3-trifluoro-2-hydroxy-2-methylpropanamide from Arthrobacter sp. S-2

Ken-ichi Fuhshuku; Shunsuke Watanabe; Tetsuro Nishii; Akihiro Ishii; Yasuhisa Asano

A novel S-enantioselective amidase acting on 3,3,3-trifluoro-2-hydroxy-2-methylpropanamide was purified from Arthrobacter sp. S-2. The enzyme acted S-enantioselectively on 3,3,3-trifluoro-2-hydroxy-2-methylpropanamide to yield (S)-3,3,3-trifluoro-2-hydroxy-2-methylpropanoic acid. Based on the N-terminal amino acid sequence of this amidase, the gene coding S-amidase was cloned from the genomic DNA of Arthrobacter sp. S-2 and expressed in an Escherichia coli host. The recombinant S-amidase was purified and characterized. Furthermore, the purified recombinant S-amidase with the C-His6-tag, which was expressed in E. coli as the C-His6-tag fusion protein, was used in the kinetic resolution of (±)-3,3,3-trifluoro-2-hydroxy-2-methylpropanamide to obtain (S)-3,3,3-trifluoro-2-hydroxy-2-methylpropanoic acid and (R)-3,3,3-trifluoro-2-hydroxy-2-methylpropanamide. Graphical Abstract Enantioselective hydrolysis of 3,3,3-trifluoro-2-hydroxy-2-methylpropanamide 2 by S-amidase from Arthrobacter sp. S-2.


Bioscience, Biotechnology, and Biochemistry | 2018

Characterization of a novel hydroxynitrile lyase from Nandina domestica Thunb

Kimiyasu Isobe; Asuka Kitagawa; Kazuma Kanamori; Nozomi Kashiwagi; Daisuke Matsui; Takuya Yamaguchi; Ken-ichi Fuhshuku; Hisashi Semba; Yasuhisa Asano

ABSTRACT The leaves of Nandina domestica Thunb. exhibited high hydroxynitrile lyase (HNL) activity in (R)-mandelonitrile synthesis. The specific activity of young leaves was significantly higher than that of mature leaves. We isolated two HNLs with molecular mass of 24.9 kDa (NdHNL-S) and 28.0 kDa (NdHNL-L) from the young leaves. Both NdHNLs were composed of two identical subunits, without FAD and carbohydrates. We purified NdHNL-L and revealed its enzymatic properties. The whole deduced amino acid sequence of NdHNL-L was not homologous to any other HNLs, and the specific activity for mandelonitrile synthesis by NdHNL-L was higher than that by other plant HNLs. The enzyme catalyzed enantioselective synthesis of (R)-cyanohydrins, exhibited high activity at pH 4.0, and high stability in the pH range of 3.5–8.0 and below 55°C. Thus, NdHNL-L is a novel HNL with novel amino acid sequence and has a potential for the efficient production of (R)-cyanohydrins. Graphical Abstract Leaves of Nandina domestica Thunb. showing high R-hydroxynitrile lyase (HNL) activity.


Tetrahedron | 2012

Synthesis of optically active medium-sized α-aminolactams via ring-closing metathesis

Ken-ichi Fuhshuku; Yasuhisa Asano


Journal of Molecular Catalysis B-enzymatic | 2014

Efficient preparation of both enantiomers of 3,3,3-trifluoro-2-hydroxy-2-methylpropanoic acid catalyzed by Shinella sp. R-6 and Arthrobacter sp. S-2

Ken-ichi Fuhshuku; Shunsuke Watanabe; Tetsuro Nishii; Akihiro Ishii; Yasuhisa Asano


Archive | 2011

Method for industrially producing (S)-1,1,1-trifluoro-2-propanol

Yasuhisa Asano; Ken-ichi Fuhshuku; Tetsuro Nishii; Akihiro Ishii


Biocatalysis and agricultural biotechnology | 2014

Preparation of d-α-aminolactams by l-enantioselective degradation of α-aminolactam mediated by Mesorhizobium sp. L88

Ken-ichi Fuhshuku; Momoko Takata; Hiroka Iwatsubo; Yasuhisa Asano

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Akihiro Ishii

Tokyo Institute of Technology

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Shunsuke Watanabe

Toyama Prefectural University

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Asuka Kitagawa

Toyama Prefectural University

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Daisuke Matsui

Toyama Prefectural University

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Hiroka Iwatsubo

Toyama Prefectural University

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Kazuma Kanamori

Toyama Prefectural University

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