Biotechnology and Bioengineering, Vol.97, No.4, 735-741, 2007
Deglycosylation of ovalbumin prohibits formation of a heat-stable conformer
To study the influence of the carohydrate-moiety of ovalbumin on the formation of the heat-stable conformer S-ovalbumin on the formation of heat-stable conformer S-ovalbumin, ovalbumin is deglycosylated with PNGase-F under native conditions. Although the enzymatic deglycosylation procedure resulted in a complete loss of the ability to bind to Concavalin A column-material, only in about 50% the proteins lost their complete carbohydrate moiety, as demonstrated by mass spectrometry and size exclusion chromatography. Tehrmal stability and conformational changes were determined using circular dichroism and differential scanning calorimetry and demonstrated at ambient temperature no conformational changes due to the deglycosylation. Also the denaturation temperature of the processed proteins remained the same (77.4 +/- 0.4 degrees C). After heat treatment of the processed protein at 55 degrees C and pH 9.9 for 72 h, the condition that converts native ovalbumin into the het-stable conformer (S-ovalbumin), only the material with the intact carbohydrate moiety forms this heat-stable conformer. The material taht effectively lost its carbohydrate moiety appeared fully denatured and aggregated due to these processing conditions. These results indicate that PNGase-F treatment of ovalbumin prohibits the formation and stabilization of the heat-stable conformer S-ovalbumin. Since S-ovalbumin in egg protein samples is known to affect functional properties, this work illustrates a potential route to control the quality of egg protein ingredients.
Keywords:ovalbumin deglycosylation;S-ovalbumin;circular dichroisim;7thermostability;size exclusion chromatography;PNGase-F