Ren Yao, Wu Hui, Li Xiaofeng, Lai Furao, Zhao Guanglei, Xiao Xinglong
State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Wushan Road 381, Guangzhou, 510641, China.
Appl Biochem Biotechnol. 2014 Feb;172(3):1227-40. doi: 10.1007/s12010-013-0578-3. Epub 2013 Oct 24.
Biocatalytic hydrolysis reactions were designed for preparation of bioactive hydrolysate of duck egg white protein (DEWP) employing two enzymes in one pot. Firstly, the fresh DEWP was thermal treated at 95 °C, for 40 min at pH 10, to effectively deactivate enzyme inhibitors thus facilitating the following two-step enzymatic hydrolysis. Compared with single-enzyme processes, the two-step enzymatic procedures showed much higher reaction efficiency. The first enzymatic step (in the presence of Alcalase or hydrolase SEEP) allowed to hydrolyze DEWP with degree of hydrolysis (DH) of 8.8-10% and soluble peptide yield (SEP) of 60.5-70.2% in a short period (4 h). The second enzymatic step (in the presence of Trypsin or Alcalase) gave a further degradation of DEWP with DH and SEP being more than 26.2% and 90.4%, respectively. The final hydrolysates exhibited high antioxidant activity in an evident DH dependent manner. The hydrolysates achieved by sequential addition of the proteinase SEEP and Alcalase at DH value 21% gave the highest antioxidant activity, which was mainly ascribed to the changes in the amino acid compositions that the contents of some key amino acids and total hydrophobic amino acids were significantly improved by the enzymatic hydrolysis.
设计了生物催化水解反应,采用两种酶一锅法制备鸭蛋清蛋白(DEWP)的生物活性水解产物。首先,将新鲜的DEWP在95℃、pH 10条件下热处理40分钟,以有效失活酶抑制剂,从而促进后续的两步酶水解。与单酶法相比,两步酶法显示出更高的反应效率。第一步酶解(在碱性蛋白酶或水解酶SEEP存在下)可在短时间内(4小时)将DEWP水解,水解度(DH)为8.8 - 10%,可溶性肽产率(SEP)为60.5 - 70.2%。第二步酶解(在胰蛋白酶或碱性蛋白酶存在下)使DEWP进一步降解,水解度和可溶性肽产率分别超过26.2%和90.4%。最终水解产物表现出高抗氧化活性,且明显依赖于水解度。在水解度为21%时依次添加蛋白酶SEEP和碱性蛋白酶得到的水解产物具有最高的抗氧化活性,这主要归因于氨基酸组成的变化,即一些关键氨基酸和总疏水氨基酸的含量通过酶解得到显著提高。