TY - JOUR
T1 - Effect of Protease Digestion on the Activity of Sugar-depleted Enzymes Prepared with Endo-β-N-acetylglucosaminidase from Flavobacterium sp
AU - Yamamoto, Kenji
AU - Takegawa, Kaoru
AU - Kumagai, Hidehiko
AU - Tochikura, Tatsurokuro
N1 - Copyright:
Copyright 2016 Elsevier B.V., All rights reserved.
PY - 1987
Y1 - 1987
N2 - Endo-β-N-acetylglucosaminidase, purified to homogeneity from the culture filtrate of a Flavobacterium sp., liberated the carbohydrate chains from yeast invertase. About 90% of the carbohydrate associated with this glycoprotein was removed by the The native and carbohydrate-depleted enzymes were compared and found to exhibit similar catalytic activities, thermal stabilities and pH-activity profiles. However, the carbohydrate-depleted invertase was more susceptible to proteases with relatively broad specificities such as subtilisin and pronase, as found on examination of the enzyme activity and electrophoresis. On the other hand, trypsin did not have such an effect on the enzyme activities of the native and carbohydrate-depleted enzymes. The also released carbohydrate chains from the purified of Penicillium oxalicum. Although the native and carbohydrate-depleted did not differ significantly in their stabilities or pH-activity profiles, the carbohydrate-depleted form was more susceptible to proteolysis by subtilisin, pronase and trypsin. From these results, it would appear that the carbohydrate of a glycosylated enzyme plays a role in protecting the enzyme from proteolysis.
AB - Endo-β-N-acetylglucosaminidase, purified to homogeneity from the culture filtrate of a Flavobacterium sp., liberated the carbohydrate chains from yeast invertase. About 90% of the carbohydrate associated with this glycoprotein was removed by the The native and carbohydrate-depleted enzymes were compared and found to exhibit similar catalytic activities, thermal stabilities and pH-activity profiles. However, the carbohydrate-depleted invertase was more susceptible to proteases with relatively broad specificities such as subtilisin and pronase, as found on examination of the enzyme activity and electrophoresis. On the other hand, trypsin did not have such an effect on the enzyme activities of the native and carbohydrate-depleted enzymes. The also released carbohydrate chains from the purified of Penicillium oxalicum. Although the native and carbohydrate-depleted did not differ significantly in their stabilities or pH-activity profiles, the carbohydrate-depleted form was more susceptible to proteolysis by subtilisin, pronase and trypsin. From these results, it would appear that the carbohydrate of a glycosylated enzyme plays a role in protecting the enzyme from proteolysis.
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U2 - 10.1271/bbb1961.51.1481
DO - 10.1271/bbb1961.51.1481
M3 - Article
AN - SCOPUS:85004601242
SN - 0002-1369
VL - 51
SP - 1481
EP - 1487
JO - Agricultural and Biological Chemistry
JF - Agricultural and Biological Chemistry
IS - 6
ER -