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Applied Microbiology and Biotechnology
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June 29, 2004
Production of autoproteolytically subunit-assembled 7-beta-(4-carboxybutanamido)cephalosporanic acid (GL-7ACA) acylase from Pseudomonas sp. C427 using a chitin-binding domain
Koji Nagao, Michio Yamashita, Mitsuyoshi Ueda
Biosensors & Bioelectronics
|
October 22, 2003
Development of combinatorial bioengineering using yeast cell surface display--order-made design of cell and protein for bio-monitoring
Seiji Shibasaki, Atsuo Tanaka, Mitsuyoshi Ueda
Journal of Bioscience and Bioengineering
|
June 5, 2012
Next generation of antimicrobial peptides as molecular targeted medicines
Wataru Aoki, Kouichi Kuroda, Mitsuyoshi Ueda
AMB Express
|
March 18, 2020
Evaluation of the yeast surface display system for screening of functional nanobodies
Kaho Kajiwara, Wataru Aoki, Mitsuyoshi Ueda
Protein Engineering, Design & Selection : PEDS
|
May 24, 2008
Alteration of substrate specificity of rat neurolysin from matrix metalloproteinase-2/9-type to -3-type specificity by comprehensive mutation
Tetsuya Kadonosono, Michiko Kato-Murai, Mitsuyoshi Ueda
Journal of Biotechnology
|
November 26, 2009
Effects of catalytic site mutations on active expression of phage fused penicillin acylase
Yi-Feng Shi, Patrice Soumillion, Mitsuyoshi Ueda
Biochemistry
|
April 10, 2012
Mutated intramolecular chaperones generate high-activity isomers of mature enzymes
Mitsuru Nagayama, Haruko Maeda, Kouichi Kuroda, et al.
Methods in Molecular Biology (Clifton, N.J.)
|
February 14, 2022
Production of Single-Domain Antibodies in Pichia pastoris
Yusei Matsuzaki, Kaho Kajiwara, Wataru Aoki, et al.
AMB Express
|
October 25, 2012
Construction of a novel selection system for endoglucanases exhibiting carbohydrate-binding modules optimized for biomass using yeast cell-surface engineering
Akihito Nakanishi, Jungu Bae, Kouichi Kuroda, et al.
Proteomes
|
September 21, 2018
Molecular and Physiological Study of <i>Candida albicans</i> by Quantitative Proteome Analysis
Seiji Shibasaki, Miki Karasaki, Wataru Aoki, et al.
Page
of 26
Search research articles
Search
Showing results (51-60 of 252) with videos related to
Sort By:
Page
of 26
Applied Microbiology and Biotechnology
|
June 29, 2004
Production of autoproteolytically subunit-assembled 7-beta-(4-carboxybutanamido)cephalosporanic acid (GL-7ACA) acylase from Pseudomonas sp. C427 using a chitin-binding domain
Koji Nagao, Michio Yamashita, Mitsuyoshi Ueda
Biosensors & Bioelectronics
|
October 22, 2003
Development of combinatorial bioengineering using yeast cell surface display--order-made design of cell and protein for bio-monitoring
Seiji Shibasaki, Atsuo Tanaka, Mitsuyoshi Ueda
Journal of Bioscience and Bioengineering
|
June 5, 2012
Next generation of antimicrobial peptides as molecular targeted medicines
Wataru Aoki, Kouichi Kuroda, Mitsuyoshi Ueda
AMB Express
|
March 18, 2020
Evaluation of the yeast surface display system for screening of functional nanobodies
Kaho Kajiwara, Wataru Aoki, Mitsuyoshi Ueda
Protein Engineering, Design & Selection : PEDS
|
May 24, 2008
Alteration of substrate specificity of rat neurolysin from matrix metalloproteinase-2/9-type to -3-type specificity by comprehensive mutation
Tetsuya Kadonosono, Michiko Kato-Murai, Mitsuyoshi Ueda
Journal of Biotechnology
|
November 26, 2009
Effects of catalytic site mutations on active expression of phage fused penicillin acylase
Yi-Feng Shi, Patrice Soumillion, Mitsuyoshi Ueda
Biochemistry
|
April 10, 2012
Mutated intramolecular chaperones generate high-activity isomers of mature enzymes
Mitsuru Nagayama, Haruko Maeda, Kouichi Kuroda, et al.
Methods in Molecular Biology (Clifton, N.J.)
|
February 14, 2022
Production of Single-Domain Antibodies in Pichia pastoris
Yusei Matsuzaki, Kaho Kajiwara, Wataru Aoki, et al.
AMB Express
|
October 25, 2012
Construction of a novel selection system for endoglucanases exhibiting carbohydrate-binding modules optimized for biomass using yeast cell-surface engineering
Akihito Nakanishi, Jungu Bae, Kouichi Kuroda, et al.
Proteomes
|
September 21, 2018
Molecular and Physiological Study of <i>Candida albicans</i> by Quantitative Proteome Analysis
Seiji Shibasaki, Miki Karasaki, Wataru Aoki, et al.
Page
of 26