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血管紧张素I转换酶抑制肽的制备及从海蜇(海蜇)蛋白水解物中分离出四种新型肽。

Production of the angiotensin I converting enzyme inhibitory peptides and isolation of four novel peptides from jellyfish (Rhopilema esculentum) protein hydrolysate.

作者信息

Liu Xin, Zhang Miansong, Shi Yaping, Qiao Ruojin, Tang Wei, Sun Zhenliang

机构信息

Biology Institute of Shandong Academy of Sciences/Key Laboratory for Applied Microbiology of Shandong Province, Jinan, 250014, China.

Linyi Institute for Food and Drug control, Linyi, 276001, China.

出版信息

J Sci Food Agric. 2016 Jul;96(9):3240-8. doi: 10.1002/jsfa.7507. Epub 2015 Nov 30.

Abstract

BACKGROUND

Angiotensin I converting enzyme (ACE) plays an important role in regulating blood pressure in the human body. ACE inhibitory peptides derived from food proteins could exert antihypertensive effects without side effects. Jellyfish (Rhopilema esculentum) is an important fishery resource suitable for production of ACE inhibitory peptides. The objective of this study was to optimize the hydrolysis conditions for production of protein hydrolysate from R. esculentum (RPH) with ACE inhibitory activity, and to isolate and identify the ACE inhibitory peptides from RPH.

RESULTS

Rhopilema esculentum protein was hydrolyzed with Compound proteinase AQ to produce protein hydrolysate with ACE inhibitory activity, and the hydrolysis conditions were optimized using response surface methodology. The optimum parameters for producing peptides with the highest ACE inhibitory activity were as follows: hydrolysis time 3.90 h, hydrolysis temperature 58 °C, enzyme:substrate ratio 2.8% and pH 7.60. Under these conditions, the ACE inhibitory rate reached 32.21%. In addition, four novel ACE inhibitory peptides were isolated, and their amino acids sequences were identified as Val-Gly-Pro-Tyr, Phe-Thr-Tyr-Val-Pro-Gly, Phe-Thr-Tyr-Val-Pro-Gly-Ala and Phe-Gln-Ala-Val-Trp-Ala-Gly, respectively. The IC50 value of the purified peptides for ACE inhibitory activity was 8.40, 23.42, 21.15 and 19.11 µmol L(-1) .

CONCLUSION

These results indicate that the protein hydrolysate prepared from R. esculentum might be a commercial competitive source of ACE inhibitory ingredients to be used in functional foods. © 2015 Society of Chemical Industry.

摘要

背景

血管紧张素I转换酶(ACE)在调节人体血压方面发挥着重要作用。源自食物蛋白的ACE抑制肽可发挥降压作用且无副作用。海蜇(海蜇)是一种适合用于生产ACE抑制肽的重要渔业资源。本研究的目的是优化从海蜇中制备具有ACE抑制活性的蛋白质水解物的水解条件,并从海蜇蛋白质水解物中分离和鉴定ACE抑制肽。

结果

用复合蛋白酶AQ水解海蜇蛋白以产生具有ACE抑制活性的蛋白质水解物,并采用响应面法优化水解条件。产生具有最高ACE抑制活性的肽的最佳参数如下:水解时间3.90小时、水解温度58℃、酶与底物比例2.8%以及pH值7.60。在这些条件下,ACE抑制率达到32.21%。此外,分离出四种新型ACE抑制肽,其氨基酸序列分别鉴定为Val-Gly-Pro-Tyr、Phe-Thr-Tyr-Val-Pro-Gly、Phe-Thr-Tyr-Val-Pro-Gly-Ala和Phe-Gln-Ala-Val-Trp-Ala-Gly。纯化肽对ACE抑制活性的IC50值分别为8.40、23.42、21.15和19.11 μmol L(-1)。

结论

这些结果表明,从海蜇制备的蛋白质水解物可能是一种具有商业竞争力的ACE抑制成分来源,可用于功能性食品。© 2015化学工业协会。

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