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具有抗氧化特性的木豆五肽和六肽也能抑制肾素和血管紧张素-I转换酶的活性。

Pigeon pea penta- and hexapeptides with antioxidant properties also inhibit renin and angiotensin-I-converting enzyme activities.

作者信息

Olagunju Aderonke I, Alashi Adeola M, Omoba Olufunmilayo S, Enujiugha Victor N, Aluko Rotimi E

机构信息

Department of Food Science and Technology, Federal University of Technology, Akure, Nigeria.

Research & Development, Custom Agricultural Intelligence Inc., Regina, Saskatchewan, Canada.

出版信息

J Food Biochem. 2022 Dec;46(12):e14485. doi: 10.1111/jfbc.14485. Epub 2022 Oct 17.

Abstract

Pigeon pea protein was sequentially digested with pepsin followed by pancreatin and the hydrolysate separated into 18 fractions using reversed-phase high-performance liquid chromatography. Fractions were analyzed for in vitro antioxidant properties (radical scavenging, metal chelation, and ferric iron reducing ability) in addition to inhibition of renin and angiotensin-converting enzyme (ACE). The most active fractions were analyzed by mass spectroscopy followed by identification of 10 peptide sequences (7 pentapeptides and 3 hexapeptides). All the peptides showed a wide range of multifunctional activity by scavenging hydroxyl (31.9-66.8%) and superoxide (25.6-100.0%) radicals in addition to ACE inhibition (7.4-100%) with significant (p < .05) differences between the peptides. AGVTVS, TKDIG, TSRLG, GRIST, and SGEKI were the most active; however, AGVTVS had the highest hydrophobic residue and exhibited the strongest activity against ACE, renin as well as superoxide and hydroxyl radicals. PRACTICAL APPLICATIONS: There is an increasing attraction of researchers to food peptides especially from legume proteins. Enzymatic digestion as well as high performance liquid chromatography (HPLC) purification has become an important process used to separate peptides with significant biological activities and health-promoting effects. There is useful information regarding the bioactive and functional (in vitro antioxidant, antidiabetic, in vitro/in vivo antihypertensive) properties of hydrolyzed and ultra-filtered pigeon pea fractions but scant research output still exists for purified peptides from pigeon pea establishing their therapeutic potential. The present study aimed to separate peptide fractions from pigeon pea hydrolysate and identify available amino acid sequences from the parent protein. Therefore, peptide sequences generated from the most bioactive fractions showed prospects for the expanded industrial utilization of pigeon pea. Further promoting its application as functional ingredient or additive for alleviating angiotensin-converting enzyme-related diseases.

摘要

木豆蛋白先用胃蛋白酶进行酶解,再用胰酶进行酶解,然后使用反相高效液相色谱法将水解产物分离成18个组分。除了检测对肾素和血管紧张素转换酶(ACE)的抑制作用外,还对各组分的体外抗氧化性能(自由基清除、金属螯合和铁离子还原能力)进行了分析。对活性最强的组分进行质谱分析,随后鉴定出10个肽序列(7个五肽和3个六肽)。所有肽均表现出广泛的多功能活性,除了抑制ACE(7.4-100%)外,还能清除羟基自由基(31.9-66.8%)和超氧阴离子自由基(25.6-100.0%),各肽之间存在显著(p < .05)差异。AGVTVS、TKDIG、TSRLG、GRIST和SGEKI活性最强;然而,AGVTVS具有最高的疏水残基,对ACE、肾素以及超氧阴离子和羟基自由基表现出最强的活性。实际应用:研究人员对食品肽,尤其是来自豆类蛋白的肽越来越感兴趣。酶解以及高效液相色谱(HPLC)纯化已成为分离具有显著生物活性和促进健康作用的肽的重要过程。关于水解和超滤木豆组分的生物活性和功能(体外抗氧化、抗糖尿病、体外/体内抗高血压)特性有有用的信息,但对于木豆纯化肽的治疗潜力的研究成果仍然很少。本研究旨在从木豆水解产物中分离肽组分,并鉴定亲本蛋白中的可用氨基酸序列。因此,从生物活性最强的组分中产生的肽序列显示出木豆扩大工业利用的前景。进一步促进其作为功能成分或添加剂用于缓解与血管紧张素转换酶相关疾病的应用。

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