Can conformational changes be responsible for solvent and excipient effects on the catalytic behavior of subtilisin Carlsberg in organic solvents?
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Effect of crown ethers on structure, stability, activity, and enantioselectivity of subtilisin Carlsberg in organic solventsDetection of ligand- and solvent-induced shape alterations of cell-growth-regulatory human lectin galectin-1 in solution by small angle neutron and x-ray scattering.Phospholipase D-catalyzed transphosphatidylation in anhydrous organic solvents.Comparison of theoretical and experimental data to evaluate substrate diffusional limitations for crown ether- and methyl-beta-cyclodextrin-activated serine protease subtilisin Carlsberg in tetrahydrofuran.On the activity loss of hydrolases in organic solvents: II. a mechanistic study of subtilisin Carlsberg.Effect of prolonged exposure to organic solvents on the active site environment of subtilisin CarlsbergEnantioselective Transesterification Catalysis by Nanosized Serine Protease Subtilisin Carlsberg Particles in Tetrahydrofuran.Heme structural perturbation of PEG-modified horseradish peroxidase C in aromatic organic solvents probed by optical absorption and resonance Raman dispersion spectroscopy.Bioconjugation for enzyme technology.Two-step nanoprecipitation for the production of protein-loaded PLGA nanospheresOptimizing the salt-induced activation of enzymes in organic solvents: effects of lyophilization time and water content.Preparation and characterization of poly(D,L-lactide-co-glycolide) microspheres for controlled release of human growth hormone.Activity and enantioselectivity of the hydroxynitrile lyase MeHNL in dry organic solvents.Encapsulation of bovine serum albumin in poly(lactide-co-glycolide) microspheres by the solid-in-oil-in-water technique.Supercritical fluids are superior media for catalysis by cross-linked enzyme microcrystals of subtilisin Carlsberg.Prevention of structural perturbations and aggregation upon encapsulation of bovine serum albumin into poly(lactide-co-glycolide) micropheres using the solid-in-oil-in water technique.Why do crown ethers activate enzymes in organic solvents?Zeolite molecular sieves have dramatic acid-base effects on enzymes in nonaqueous media.Enzyme activation in organic solvents: co-lyophilization of subtilisin Carlsberg with methyl-beta-cyclodextrin renders an enzyme catalyst more active than the cross-linked enzyme crystals.A molecular perspective on nonaqueous biocatalysis: contributions from simulation studies.Transmittance Fourier Transform Infrared Spectra of Liquid Water in the Whole Mid-Infrared Region: Temperature Dependence and Structural Analysis
P2860
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P2860
Can conformational changes be responsible for solvent and excipient effects on the catalytic behavior of subtilisin Carlsberg in organic solvents?
description
1997 nî lūn-bûn
@nan
1997年の論文
@ja
1997年学术文章
@wuu
1997年学术文章
@zh
1997年学术文章
@zh-cn
1997年学术文章
@zh-hans
1997年学术文章
@zh-my
1997年学术文章
@zh-sg
1997年學術文章
@yue
1997年學術文章
@zh-hant
name
Can conformational changes be ...... Carlsberg in organic solvents?
@en
Can conformational changes be ...... Carlsberg in organic solvents?
@nl
type
label
Can conformational changes be ...... Carlsberg in organic solvents?
@en
Can conformational changes be ...... Carlsberg in organic solvents?
@nl
prefLabel
Can conformational changes be ...... Carlsberg in organic solvents?
@en
Can conformational changes be ...... Carlsberg in organic solvents?
@nl
P2860
P1476
Can conformational changes be ...... Carlsberg in organic solvents?
@en
P2093
Griebenow K
Klibanov AM
P2860
P304
P356
10.1002/(SICI)1097-0290(19970220)53:4<351::AID-BIT1>3.0.CO;2-M
P577
1997-02-01T00:00:00Z