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Correlation between microbial protein thermostability and resistance to denaturation in aqueous-organic solvent 2-phase systems
RK Owusu, DA Cowan
Faculty Of Life & Health Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
89
Citations (Scopus)
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Dive into the research topics of 'Correlation between microbial protein thermostability and resistance to denaturation in aqueous-organic solvent 2-phase systems'. Together they form a unique fingerprint.
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Engineering & Materials Science
Denaturation
100%
Enzyme activity
14%
Gases
5%
Growth temperature
14%
Hydrophobicity
11%
Microorganisms
21%
Organic solvents
89%
Peptide Hydrolases
27%
Proteins
57%
Solubility
9%
Surface tension
9%
Thermodynamic stability
64%
Water
4%
Medicine & Life Sciences
Enzymes
8%
Gases
13%
Growth
7%
Hydrophobic and Hydrophilic Interactions
17%
Peptide Hydrolases
26%
Protein Stability
56%
Proteins
23%
Solubility
15%
Surface Tension
21%
Temperature
11%
Tromethamine
22%
Water
10%
Chemistry
Aqueous Solution
4%
Buffer Solution
5%
Denaturation
58%
Enzyme Activity
7%
Gas
4%
Hydrophobicity
7%
Organic Solvent
13%
pH Value
3%
Protein
26%
Resistance
39%
Solubility
5%
Solvent
29%
Tension
8%