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南瓜籽中的蛋白质鉴定及潜在生物活性肽

Protein identification and potential bioactive peptides from pumpkin () seeds.

作者信息

Lin Chu-Ti, Tejano Lhumen A, Panjaitan Fenny Crista A, Permata Vinny Nabila Surya, Sevi Tesalonika, Chang Yu-Wei

机构信息

Department of Food Science National Taiwan Ocean University Keelung Taiwan.

Institute of Fish Processing Technology, College of Fisheries and Ocean Sciences University of the Philippines Visayas Miagao Iloilo Philippines.

出版信息

Food Sci Nutr. 2024 Apr 24;12(8):5388-5402. doi: 10.1002/fsn3.4188. eCollection 2024 Aug.

Abstract

Pumpkin is an economically important crop all over the world. Approximately, 18%-21% of pumpkins, consisting of peels and seeds by-products, are wasted during processing. In addition, the seeds are rich in protein and have the potency of bioactive peptide production. This study aims to recognize the proteins and investigate the potential bioactive peptides from pumpkin () seeds. Pumpkin seeds were subjected to hot air drying (HAD) at 55°C for 12 h and freeze-drying (FD) at -80°C for 54 h before they were powdered, analyzed, and precipitated by isoelectric point to obtain pumpkin seed protein isolates (PSPI). PSPI comprised 11S globulin subunit beta, 2S seed storage albumin, and chaperonin CPN60-1. To generate hydrolysate peptides, PSPI was hydrolyzed using papain, pepsin, and bromelain. FD group pepsin hydrolysates had the highest peptide content of 420.83 mg/g. ACE inhibition and DPP-IV inhibition activity were analyzed for each enzymatic hydrolysate. The pepsin hydrolyzed sample exhibited the highest ACE inhibition of 70.26%, and the papain hydrolyzed sample exhibited the highest DPP-IV inhibition of 30.51%. The simulated gastrointestinal digestion (SGID) conducted by pepsin and pancreatin increased ACE inhibitory activity from 76.93% to 78.34%, and DPP-IV inhibited activity increased from 58.62% to 77.13%. Pepsin and papain hydrolysates were fractionated using ultrafiltration to measure ACE and DPP-IV inhibition activity. The highest free radical scavenging abilities were exhibited by the <1 kDa hydrolysate fractions with 78.34% ACE inhibitory activities and 79.55% DPP-IV inhibitory activities. This research revealed that pumpkin seeds had the potency to produce bioactive peptides.

摘要

南瓜是一种在全球具有重要经济价值的作物。在加工过程中,约18%-21%的南瓜(包括果皮和种子副产品)被浪费。此外,南瓜籽富含蛋白质,具有产生生物活性肽的潜力。本研究旨在识别南瓜籽中的蛋白质,并研究其潜在的生物活性肽。南瓜籽在55°C下进行12小时热风干燥(HAD),在-80°C下进行54小时冷冻干燥(FD),然后研磨、分析并通过等电点沉淀以获得南瓜籽蛋白分离物(PSPI)。PSPI包含11S球蛋白亚基β、2S种子贮藏白蛋白和伴侣蛋白CPN60-1。为了生成水解肽,PSPI分别用木瓜蛋白酶、胃蛋白酶和菠萝蛋白酶进行水解。FD组胃蛋白酶水解产物的肽含量最高,为420.83mg/g。对每种酶解产物分析了ACE抑制和DPP-IV抑制活性。胃蛋白酶水解样品的ACE抑制率最高,为70.26%,木瓜蛋白酶水解样品的DPP-IV抑制率最高,为30.51%。胃蛋白酶和胰蛋白酶进行的模拟胃肠道消化(SGID)使ACE抑制活性从76.93%提高到78.34%,DPP-IV抑制活性从58.62%提高到77.13%。胃蛋白酶和木瓜蛋白酶水解产物通过超滤进行分级分离,以测定ACE和DPP-IV抑制活性。<1kDa水解产物级分表现出最高的自由基清除能力,ACE抑制活性为78.34%,DPP-IV抑制活性为79.55%。本研究表明南瓜籽具有产生生物活性肽的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23a5/11317681/8812bf275c50/FSN3-12-5388-g005.jpg

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