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微生物谷氨酰胺转氨酶和银耳多糖介导修饰乳铁蛋白的机制:功能性食品的开发。

Mechanism on microbial transglutaminase and Tremella fuciformis polysaccharide-mediated modification of lactoferrin: Development of functional food.

机构信息

Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin Key Laboratory of Industrial Microbiology, College of Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, PR China.

Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin Key Laboratory of Industrial Microbiology, College of Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, PR China.

出版信息

Food Chem. 2024 Oct 1;454:139835. doi: 10.1016/j.foodchem.2024.139835. Epub 2024 May 25.

Abstract

Lactoferrin (LF) with various biological functions demonstrates great application potential. However, its application was restricted by its poor gelation and instability. The aim of this work was to explore the effect of microbial transglutaminase (MTGase) and Tremella fuciformis polysaccharide (TP) on the functional properties of LF. The formation of a self-supporting LF gel could be induced by MTGase through generating covalent crosslinks between the LF protein molecules. Meanwhile, TP was introduced into the gel system to improve the strength of LF-TP composite gels by enhancing non-covalent interactions such as hydrogen bond and electrostatic interactions during gel formation. Additionally, the LF-TP composite gel exhibited outstanding functional characteristics such as gastrointestinal digestive stability and antioxidant property. This work clarified the mechanism on MTGase and TP-mediated modification of lactoferrin, offered a novel strategy to increase the functional characteristics of LF, and enlarged the application range of LF and TP.

摘要

乳铁蛋白(LF)具有多种生物学功能,具有很大的应用潜力。然而,其较差的胶凝性和不稳定性限制了其应用。本工作旨在探讨微生物谷氨酰胺转氨酶(MTGase)和银耳多糖(TP)对 LF 功能特性的影响。MTGase 可以通过 LF 蛋白分子间形成共价交联,诱导 LF 形成自支撑凝胶。同时,将 TP 引入凝胶体系,通过在凝胶形成过程中增强氢键和静电相互作用等非共价相互作用,提高 LF-TP 复合凝胶的强度。此外,LF-TP 复合凝胶具有良好的胃肠消化稳定性和抗氧化性能等功能特性。本工作阐明了 MTGase 和 TP 介导的 LF 修饰机制,为提高 LF 的功能特性提供了一种新策略,扩大了 LF 和 TP 的应用范围。

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