Soybean Trypsin Inhibitors: Selective Inactivation at Hydrolysis of Soybean Proteins by Some Enzymatic Complexes
T. A. Muranova, Д. В. Зинченко, N. A. Belova, Alexey K. Surin, А. И. Мирошников
Abstract
T. A. Muranova, Д. В. Зинченко, N. A. Belova, Alexey K. Surin, А. И. Мирошников
Abstract
Abstract Inactivation of the Kunitz and Bowman-Birk soybean trypsin inhibitors at hydrolysis of soybean proteins by enzymatic complexes was studied. These complexes are derived from king crab hepatopancreas, cod fish pyloric caeca, and a commercial enzymatic complex of protosubtilin. Analysis of the soybean protein hydrolysates showed that these enzymatic complexes completely digested the Kunitz trypsin inhibitor (60–70% of the total trypsin inhibitors) and had almost no effect on the Bowman-Birk trypsin and chymotrypsin inhibitor. All of the enzymatic complexes contain different sets of enzymes with different proteolytic specificity. This allow to make the conclusion that Bowman-Birk inhibitor is highly resistant to proteolysis and is not inactivated at enzymatic hydrolysis.
OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Abstract Inactivation of the Kunitz and Bowman-Birk soybean trypsin inhibitors at hydrolysis of soybean proteins by enzymatic complexes was studied. These complexes are derived from king crab hepatopancreas, cod fish pyloric caeca, and a commercial enzymatic complex of protosubtilin. Analysis of the soybean protein hydrolysates showed that these enzymatic complexes completely digested the Kunitz trypsin inhibitor (60–70% of the total trypsin inhibitors) and had almost no effect on the Bowman-Birk trypsin and chymotrypsin inhibitor. All of the enzymatic complexes contain different sets of enzymes with different proteolytic specificity. This allow to make the conclusion that Bowman-Birk inhibitor is highly resistant to proteolysis and is not inactivated at enzymatic hydrolysis.
Key concepts: Trypsin, Kunitz STI protease inhibitor, Proteolysis, Enzyme, Biochemistry, Chemistry, Chymotrypsin, Hydrolysate