Protein Stabilisation by Compatible Solutes: Effect of Mannosylglycerate on Unfolding Thermodynamics and Activity of Ribonuclease A
- 28 July 2003
- journal article
- research article
- Published by Wiley in ChemBioChem
- Vol. 4 (8) , 734-741
- https://doi.org/10.1002/cbic.200300574
Abstract
Differential scanning calorimetry, optical spectroscopy, and activity measurements were used to investigate the effect of mannosylglycerate, a negatively charged osmolyte widely distributed among thermophilic and hyperthermophilic archaea and bacteria, on the thermal unfolding of ribonuclease A (RNase A). For comparison, assays in the presence of trehalose, a canonical solute in mesophiles, and potassium chloride were also carried out. A thermodynamic analysis was performed by using differential scanning calorimetry data. The changes in the heat capacity for unfolding were similar for the different solutes examined. Mannosylglycerate was an efficient thermostabiliser of RNase A and induced an increase of 6 °C mole‐1 in the melting temperature. Moreover, the performance of mannosylglycerate as a stabiliser depended on the net charge of the molecule, with the maximal effect being observed at pH values above 4.5. Analysis of the enthalpic and entropic contributions to unfolding, derived from calorimetric data, revealed that the stabilisation rendered by mannosylglycerate is primarily achieved through a decrease in the unfolding entropy. Also, the number of protons taken up by RNase A upon denaturation in the presence of mannosylglycerate was considerably higher than with other solutes, a result consistent with a more rigid structure of the native protein. Mannosylglycerate (potassium salt) inhibited the activity of RNase A, albeit to a smaller extent than KCl, and acted as an efficient suppressor of aggregation of the denatured protein, thereby having a remarkable beneficial effect on the inactivation of RNase A upon thermal denaturation. The results are discussed in view of the physiological role of this charged compatible solute.Keywords
This publication has 41 references indexed in Scilit:
- Sulfate anion stabilization of native ribonuclease A both by anion binding and by the Hofmeister effectProtein Science, 2002
- Comparative study of the thermostabilizing properties of mannosylglycerate and other compatible solutes on model enzymesExtremophiles, 2002
- Thermal unfolding of ribonuclease A in phosphate at neutral pH: Deviations from the two–state modelProtein Science, 2001
- Measurement and analysis of results obtained on biological substances with differential scanning calorimetry (IUPAC Technical Report)Pure and Applied Chemistry, 2001
- Effect of Osmolytes on the Exchange Rates of Backbone Amide Protons in ProteinsBiochemistry, 1998
- Temperature dependence of the preferential interactions of ribonuclease a in aqueous co‐solvent systems: Thermodynamic analysisProtein Science, 1997
- Hyperthermophile Protein Folding Thermodynamics: Differential Scanning Calorimetry and Chemical Denaturation of Sac7dJournal of Molecular Biology, 1996
- Effects of a Naturally Occurring Compatible Osmolyte on the Internal Dynamics of Ribonuclease ABiochemistry, 1995
- Heat capacity of proteinsJournal of Molecular Biology, 1990
- Unfolding free energy changes determined by the linear extrapolation method. 1. Unfolding of phenylmethanesulfonyl .alpha.-chymotrypsin using different denaturantsBiochemistry, 1988