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PMID: 10484175 Published · ppublish English Journal Article

Extrinsic protein stabilization by the naturally occurring osmolytes beta-hydroxyectoine and betaine.

Extremophiles : life under extreme conditions ·Vol. 3 ·No. 3 ·1999-08-00 ·Pages 191-8

Knapp S, Ladenstein R, Galinski EA

Abstract

Thermodynamic aspects of protein stabilization by two widespread naturally occurring osmolytes, beta-hydroxyectoine and betaine, were studied using differential scanning calorimetry (DSC) and bovine ribonuclease A (RNase A) as a model protein. The osmolyte beta-hydroxyectoine purified from Marinococcus was found to be a very efficient stabilizer. At a concentration of 3M it increased the melting temperature of RNase A (Tm) by more than 12K and gave rise to a stability increase of 10.6kJ/mol at room temperature. The heat capacity difference between the folded and unfolded state (deltaC(p)) was found to be significantly increased. Betaine stabilized RNase A only at concentrations less than 3M. Also, here deltaCp was found to be increased. Calculation of the number of water molecules that additionally bind to unfolded RNase A resulted in surprisingly low numbers for both osmolytes. The significant stabilization of RNase A by beta-hydroxyectoine makes this osmolyte an interesting stabilizer in biotechnological processes in which enzymes are applied in the presence of denaturants or at high temperature.

MeSH Terms
Amino Acids, Diamino/chemistry Animals Betaine/chemistry Calorimetry, Differential Scanning Cattle Gram-Positive Bacteria/chemistry Protein Denaturation Ribonuclease, Pancreatic/chemistry Thermodynamics
Chemicals
Amino Acids, Diamino hydroxyectoine Betaine Ribonuclease, Pancreatic
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Knapp S
Karolinska Institute, Department of Biosciences at Novum, Center for Structural Biochemistry (CSB), Huddinge, Sweden. Stefan.Knapp@eu.pnu.com
Ladenstein R
Galinski E A
Article Info
Journal
Extremophiles : life under extreme conditions
Abbr.
Extremophiles
ISSN
1431-0651
Published
1999-08-00
Pages
191-8
Language
English
Region
Germany
NLM ID
9706854
Subset
IM
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