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从脱脂柠檬罗勒籽中得到的 ACE 抑制肽:优化、纯化、鉴定、构效关系和分子对接分析。

ACE inhibitory peptides derived from de-fatted lemon basil seeds: optimization, purification, identification, structure-activity relationship and molecular docking analysis.

机构信息

Program in Biotechnology, Faculty of Science, Chulalongkorn University, 254 Phayathai Road, Pathumwan, Bangkok 10330, Thailand.

Research Unit in Bioconversion/Bioseparation for Value-Added Chemical Production, Institute of Biotechnology and Genetic Engineering, Chulalongkorn University, 254 Phayathai Road, Pathumwan, Bangkok 10330, Thailand.

出版信息

Food Funct. 2020 Sep 23;11(9):8161-8178. doi: 10.1039/d0fo01240h.

Abstract

The oil processing industry generates significant quantities of lemon basil seed residue which is not currently used to any significant extent. However, this by-product has important potential as a source of bioactive peptides which may play a role as ingredients in functional foods. This study therefore sought to optimize the preparation techniques used to obtain the necessary protein hydrolysate from de-fatted lemon basil seeds (DLBS), and subsequently to examine the ACE inhibitory capabilities of the resulting hydrolysate. Response Surface Methodology (RSM) was used for the hydrolysis of DLBS by Alcalase®, with observation of the resulting ACE inhibitory activity and degree of hydrolysis (DH). The optimum conditions were 55 °C and 103 minutes with a ratio of enzyme to substrate of 7.0% w/v. The hydrolysate was fractionated by ultrafiltration and purified through RP-HPLC. The results reveal that the F2 sub-fraction demonstrated the highest ACE inhibitory activity. The amino acid sequence of this peak was identified by mass spectrometry as LGRNLPPI and GPAGPAGL with a molecular weight of 879.06 and 639.347 Dalton, respectively. These peptides were classified as non-toxic and bitter peptides. For the synthesized version of these peptides, the ACE inhibitory activity values, measured by IC50, were 0.124 ± 0.02 mM and 0.013 ± 0.001 mM, respectively. Analysis of the Lineweaver-Burk plot confirmed that these peptides served as non-competitive ones. The study of molecular docking showed that the ACE inhibitory behavior of both purified peptides was mainly due to the interactions of the hydrogen bonds between the peptides and ACE. It is therefore suggested that DLBS may be a useful raw material allowing the production of antihypertensive peptides which can offer therapeutic and commercial benefits as an ingredient in functional foods.

摘要

油脂加工行业会产生大量的柠檬罗勒籽残渣,目前尚未得到大量利用。然而,这种副产品具有重要的潜力,可以作为生物活性肽的来源,这些肽可能作为功能性食品的成分发挥作用。因此,本研究旨在优化从脱脂柠檬罗勒籽(DLBS)中获得必要蛋白水解物的制备技术,随后研究所得水解物的 ACE 抑制能力。响应面法(RSM)用于 Alcalase®水解 DLBS,观察所得 ACE 抑制活性和水解度(DH)。最佳条件为 55°C 和 103 分钟,酶与底物的比例为 7.0%w/v。水解物通过超滤进行分级,并通过 RP-HPLC 进行纯化。结果表明,F2 亚级分表现出最高的 ACE 抑制活性。该峰的氨基酸序列通过质谱鉴定为 LGRNLPPI 和 GPAGPAGL,分子量分别为 879.06 和 639.347 道尔顿。这些肽被归类为无毒和苦味肽。对于这些肽的合成版本,通过 IC50 测量的 ACE 抑制活性值分别为 0.124 ± 0.02 mM 和 0.013 ± 0.001 mM。Lineweaver-Burk 图分析证实这些肽为非竞争性肽。分子对接分析表明,两种纯化肽的 ACE 抑制行为主要归因于肽与 ACE 之间氢键的相互作用。因此,建议 DLBS 可能是一种有用的原料,可以生产具有降压作用的肽,作为功能性食品的成分具有治疗和商业价值。

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