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通过结合计算机模拟和体外实验方法从猪产品中生成生物活性水解产物的工作流程。

Workflow towards the generation of bioactive hydrolysates from porcine products by combining in silico and in vitro approaches.

作者信息

Bechaux Julia, Ferraro Vincenza, Sayd Thierry, Chambon Christophe, Le Page Jean François, Drillet Yoan, Gatellier Philippe, Santé-Lhoutellier Véronique

机构信息

INRAE, UR 370, Qualité des produits animaux (QuaPA), Biochimie des protéines du muscle (BPM), Site de Theix, 63122 Saint Genès Champanelle, France; Cooperl Innovation, BU Ingrédients, Site de Lamballe, 22400 Lamballe, France.

INRAE, UR 370, Qualité des produits animaux (QuaPA), Biochimie des protéines du muscle (BPM), Site de Theix, 63122 Saint Genès Champanelle, France.

出版信息

Food Res Int. 2020 Jun;132:109123. doi: 10.1016/j.foodres.2020.109123. Epub 2020 Feb 21.

Abstract

Food-derived bioactive peptides have generated an increasing interest in the field of health and well-being research. They can act either against the metabolic syndrome, participate in regulating the oxidation balance or act on the immune system. The aim of this study is to develop a workflow to generate bioactive peptides from three porcine offals namely, heart, liver, and lung and one muscle the Longissimus Dorsi, by combining in silico and in vitro approaches. Bioinformatics tools (e.i. BIOPEP and Uniprot) permitted to orientate the choice of enzymes for generating abundant bioactive peptides from the four studied porcine products. With papain and subtilisin, the main bioactivities potentially released were ACE inhibitors, DPP4 inhibitors and antioxidant peptides. An in vitro validation study using papain and subtilisin demonstrated high DPP4 inhibitors and antioxidant bioactivities for the generation of peptides. This work allowed: i) the identification of all proteins that composed porcine heart, liver, lung and LD muscle that could be useful for the scientific community, ii) the development of a workflow to select most abundant proteins in a product while considering abundance factors and iii) the potential of porcine meat and offals to generate DPP4 inhibitors and antioxidant peptides. However, there is still a need in developing new tools in order to face limitations of mass spectrometry for the identification of peptides with less than six amino acids. Such a work may contribute to the development of the circular economy and the innovative creation of value-added products from animal production.

摘要

食物来源的生物活性肽在健康与幸福研究领域引起了越来越多的关注。它们可以对抗代谢综合征、参与调节氧化平衡或作用于免疫系统。本研究的目的是通过结合计算机模拟和体外方法,开发一种从三种猪内脏(即心脏、肝脏和肺)以及一种肌肉(背最长肌)中生成生物活性肽的工作流程。生物信息学工具(如BIOPEP和Uniprot)有助于为从四种研究的猪产品中生成大量生物活性肽选择合适的酶。使用木瓜蛋白酶和枯草杆菌蛋白酶时,潜在释放的主要生物活性物质为ACE抑制剂、DPP4抑制剂和抗氧化肽。一项使用木瓜蛋白酶和枯草杆菌蛋白酶的体外验证研究表明,生成的肽具有较高的DPP4抑制活性和抗氧化生物活性。这项工作实现了:i)识别构成猪心脏、肝脏、肺和背最长肌的所有蛋白质,这对科学界可能有用;ii)开发一种工作流程,在考虑丰度因素的同时选择产品中最丰富的蛋白质;iii)证明了猪肉和猪内脏生成DPP4抑制剂和抗氧化肽的潜力。然而,为了克服质谱在鉴定少于六个氨基酸的肽方面的局限性,仍需要开发新工具。这样的工作可能有助于循环经济的发展以及从动物生产中创新创造增值产品。

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