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Biochemistry
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April 26, 2006
Low-barrier hydrogen bond hypothesis in the catalytic triad residue of serine proteases: correlation between structural rearrangement and chemical shifts in the acylation process
Toyokazu Ishida
The Journal of Physical Chemistry. B
|
January 19, 2010
Computational modeling of carbohydrate-recognition process in E-selectin complex: structural mapping of sialyl Lewis X onto ab initio QM/MM free energy surface
Toyokazu Ishida
Physical Chemistry Chemical Physics : PCCP
|
January 27, 2018
Computational analysis of carbohydrate recognition based on hybrid QM/MM modeling: a case study of norovirus capsid protein in complex with Lewis antigen
Toyokazu Ishida
The Journal of Chemical Physics
|
December 3, 2008
Probing protein environment in an enzymatic process: All-electron quantum chemical analysis combined with ab initio quantum mechanical/molecular mechanical modeling of chorismate mutase
Toyokazu Ishida
Journal of the American Chemical Society
|
April 30, 2010
Effects of point mutation on enzymatic activity: correlation between protein electronic structure and motion in chorismate mutase reaction
Toyokazu Ishida
Journal of the American Chemical Society
|
August 10, 2016
Computational Design of Non-natural Sugar Alcohols to Increase Thermal Storage Density: Beyond Existing Organic Phase Change Materials
Taichi Inagaki, Toyokazu Ishida
Journal of the American Chemical Society
|
September 25, 2003
Theoretical perspectives on the reaction mechanism of serine proteases: the reaction free energy profiles of the acylation process
Toyokazu Ishida, Shigeki Kato
Journal of the American Chemical Society
|
June 4, 2004
Role of Asp102 in the catalytic relay system of serine proteases: a theoretical study
Toyokazu Ishida, Shigeki Kato
The Journal of Physical Chemistry. B
|
February 14, 2006
All electron quantum chemical calculation of the entire enzyme system confirms a collective catalytic device in the chorismate mutase reaction
Toyokazu Ishida, Dmitri G Fedorov, Kazuo Kitaura
The Journal of Physical Chemistry. A
|
July 13, 2006
Multilayer formulation of the fragment molecular orbital method (FMO)
Dmitri G Fedorov, Toyokazu Ishida, Kazuo Kitaura
Page
of 2
Search research articles
Search
Showing results (1-10 of 20) with videos related to
Sort By:
Page
of 2
Biochemistry
|
April 26, 2006
Low-barrier hydrogen bond hypothesis in the catalytic triad residue of serine proteases: correlation between structural rearrangement and chemical shifts in the acylation process
Toyokazu Ishida
The Journal of Physical Chemistry. B
|
January 19, 2010
Computational modeling of carbohydrate-recognition process in E-selectin complex: structural mapping of sialyl Lewis X onto ab initio QM/MM free energy surface
Toyokazu Ishida
Physical Chemistry Chemical Physics : PCCP
|
January 27, 2018
Computational analysis of carbohydrate recognition based on hybrid QM/MM modeling: a case study of norovirus capsid protein in complex with Lewis antigen
Toyokazu Ishida
The Journal of Chemical Physics
|
December 3, 2008
Probing protein environment in an enzymatic process: All-electron quantum chemical analysis combined with ab initio quantum mechanical/molecular mechanical modeling of chorismate mutase
Toyokazu Ishida
Journal of the American Chemical Society
|
April 30, 2010
Effects of point mutation on enzymatic activity: correlation between protein electronic structure and motion in chorismate mutase reaction
Toyokazu Ishida
Journal of the American Chemical Society
|
August 10, 2016
Computational Design of Non-natural Sugar Alcohols to Increase Thermal Storage Density: Beyond Existing Organic Phase Change Materials
Taichi Inagaki, Toyokazu Ishida
Journal of the American Chemical Society
|
September 25, 2003
Theoretical perspectives on the reaction mechanism of serine proteases: the reaction free energy profiles of the acylation process
Toyokazu Ishida, Shigeki Kato
Journal of the American Chemical Society
|
June 4, 2004
Role of Asp102 in the catalytic relay system of serine proteases: a theoretical study
Toyokazu Ishida, Shigeki Kato
The Journal of Physical Chemistry. B
|
February 14, 2006
All electron quantum chemical calculation of the entire enzyme system confirms a collective catalytic device in the chorismate mutase reaction
Toyokazu Ishida, Dmitri G Fedorov, Kazuo Kitaura
The Journal of Physical Chemistry. A
|
July 13, 2006
Multilayer formulation of the fragment molecular orbital method (FMO)
Dmitri G Fedorov, Toyokazu Ishida, Kazuo Kitaura
Page
of 2