化学
水解物
氧自由基吸收能力
抗氧化剂
DPPH
大小排阻色谱法
酶水解
色谱法
食品科学
肽
生物化学
水解
酶
作者
Zhongwei Ji,Ruixue Feng,Jian Mao
摘要
Abstract Background and objectives Prolamins are the primary component of millet protein, constituting over 50% ( w / w ) of the total protein. This study aimed to prepare and identify bioactive peptides from millet prolamins (MP). Findings Ultrasonic and heat treatment could change the secondary structure conformation of the protein and invert part of the α‐helices into β‐sheets or β‐turns. After these treatments, the degree of hydrolysis increased. The alcalase‐hydrolyzed fraction with molecular weight <1 kDa exhibited the highest antioxidant activity. The bioactive peptides were separated and purified by gel‐filtration chromatography and reversed‐phase high‐performance liquid chromatography. Two novel peptides with molecular weights of 522.3 and 785.5 Da were identified as Pro‐Phe‐Leu‐Phe (PFLF) and Ile‐Ala‐Leu‐Leu‐Ile‐Pro‐Phe (IALLIPF), respectively. Both peptides showed high antioxidant activity, especially PFLF, the 1,1‐diphenyl‐2‐picrylhydrazyl (DPPH) radical scavenging ability (RSA) of which was 149 μM TE/g protein, and the Oxygen radical absorbance capacity (ORAC) value reached 1,180 μM TE/g protein. Conclusions The results demonstrate that ultrasonic and heat treatment could enhance hydrolysis of MP by protease and antioxidant peptides with high DPPH RSA as well as ORAC value were purified and obtained. Significance and novelty Ultrasonic and heat treatment increased degree of MP hydrolysis. Two antioxidant peptides were successfully obtained from millet prolamins.
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