한국식품과학회지 (Korean Journal of Food Science and Technology)
- 제25권1호
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- Pages.39-45
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- 1993
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- 0367-6293(pISSN)
단백분해효소에 의한 대두단백의 기능적 특성변화
Modification of Functional Properties of Soy Protein Isolate by Proteolytic Enzymes
- Cha, Myeong-Hwa (Department of Food and Nutrition, Yonsei University) ;
- Yoon, Sun (Department of Food and Nutrition, Yonsei University)
- 발행 : 1993.02.01
초록
대두 단백분해효소(pepsin, actinidin)를 작용시켜 단백질 분자에 변형을 줌으로써 이에 따른 식품학적인 기능성의 변화에 대하여 연구하였다. 효소와의 반응시간에 따른 변화에 대하여 연구하였다. 효소와의 반응시간에 따른 대두단백질의 가수분해도를 측정한 결과, pepsin은 초기부터 매우 급격히 대두단백을 가수분해 시켰으며 반면 actinidin에 의한 가수분해는 반응시간이 경과함에 따라 완만하게 진행되었다. PAGE에 의한 결과는 두 효소가 비슷한 경향을 보여 반응이 진행될수록 아랫쪽으로 점차 이동하는 하나의 넓은 band를 보였다. SDS-PAGE에 서는 native SPI가 약 9개의 뚜렷한 band를 보였으나 actinidin에 의한 경우
The effects of enzymatic modification with pepsin and actinidin was studied on molecular weight distributions and functional properties of hydrolysates from soy protein isolate (SPI) differing in degree of hydrolysis. The hydrolyzed SPI by pepsin showed 41.5% degree of hydrolysis after 5 min, and maximum hydrolysis was obtained after 2 hours. Actinidin hydrolyzed SPI 26.71% degree after 1 hour. On SDS-PAGE, native SPI showed 9 distinguishable bands on SDS-PAGE gel. Pepsin treated SPI showed one broad band in the lower part of gel. This band was shifted further to the bottom of the gel and became faint as hydrolysis time increased. While actinidin treated SPI showed different SDS-PAGE pattern from pepsin. However PAGE patterns were similar with pepsin and actinidin treated groups. With pepsin treatment, solubility of SPI distinctively increased around isoelectric point(pI). Emulsifying activity (EA) and emulsifying stability (ES) showed marked increase over pH range of