Study of the Thermal Protection Mechanism of Animal Proteins and Plant Proteins on Betanin

In order to explore the thermal protective effects of different proteins on betanin and clarify its protective mechanism, two animal proteins-lactoferrin and β-lactoglobulin, and two plant proteins-rice protein and soybean protein isolate were used. The formation and interaction mechanism of protein...

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Main Authors: Ting HU, Jialong HAN, Qin GENG, Jun CHEN, Ti LI, Chengmei LIU, Xuemei HE, Taotao DAI
Format: Article
Language:zho
Published: The editorial department of Science and Technology of Food Industry 2023-04-01
Series:Shipin gongye ke-ji
Subjects:
Online Access:http://www.spgykj.com/cn/article/doi/10.13386/j.issn1002-0306.2022090301
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author Ting HU
Jialong HAN
Qin GENG
Jun CHEN
Ti LI
Chengmei LIU
Xuemei HE
Taotao DAI
author_facet Ting HU
Jialong HAN
Qin GENG
Jun CHEN
Ti LI
Chengmei LIU
Xuemei HE
Taotao DAI
author_sort Ting HU
collection DOAJ
description In order to explore the thermal protective effects of different proteins on betanin and clarify its protective mechanism, two animal proteins-lactoferrin and β-lactoglobulin, and two plant proteins-rice protein and soybean protein isolate were used. The formation and interaction mechanism of protein-betanin complex were characterized from turbidity, UV spectrum, particle size, and molecular simulation. The results showed that all the four proteins could improve the thermal stability of betanin, the protective effect was: Lactoferrin>soy protein isolate>β-lactoglobulin≈rice protein. The improvement of the thermal stability of proteins to betanin was related to the formation of protein-betanin complex. The results of turbidity, UV spectrum and particle size experiments suggested that the affinity of betanin with lactoferrin, β-lactoglobulin and soy protein isolate was higher than that of rice protein, which might be caused by the low solubility and tight structure of rice protein. In addition, the results of interaction and molecular docking showed that lactoferrin and betanin were mainly bound through hydrogen bond and electrostatic interaction, hydrogen bond played a dominant role in the interaction between β-lactoglobulin and betanin, the main interaction between rice protein and betanin was hydrophobic interaction, and soy protein isolate bound to betanin mainly by hydrogen bond and electrostatic interaction. This study provides a theoretical basis for protein-natural pigment interaction and the research of protection of betanin.
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spelling doaj.art-2db1d8d5fda14d7d95d7534a704315282023-03-23T01:41:46ZzhoThe editorial department of Science and Technology of Food IndustryShipin gongye ke-ji1002-03062023-04-01447101810.13386/j.issn1002-0306.20220903012022090301-7Study of the Thermal Protection Mechanism of Animal Proteins and Plant Proteins on BetaninTing HU0Jialong HAN1Qin GENG2Jun CHEN3Ti LI4Chengmei LIU5Xuemei HE6Taotao DAI7State Key Laboratory of Food Science and Technology, Nanchang University, Nanchang 330047, ChinaState Key Laboratory of Food Science and Technology, Nanchang University, Nanchang 330047, ChinaState Key Laboratory of Food Science and Technology, Nanchang University, Nanchang 330047, ChinaState Key Laboratory of Food Science and Technology, Nanchang University, Nanchang 330047, ChinaState Key Laboratory of Food Science and Technology, Nanchang University, Nanchang 330047, ChinaState Key Laboratory of Food Science and Technology, Nanchang University, Nanchang 330047, ChinaGuangxi Key Laboratory of Fruits and Vegetables Storage-processing Technology, Nanning 530007, ChinaState Key Laboratory of Food Science and Technology, Nanchang University, Nanchang 330047, ChinaIn order to explore the thermal protective effects of different proteins on betanin and clarify its protective mechanism, two animal proteins-lactoferrin and β-lactoglobulin, and two plant proteins-rice protein and soybean protein isolate were used. The formation and interaction mechanism of protein-betanin complex were characterized from turbidity, UV spectrum, particle size, and molecular simulation. The results showed that all the four proteins could improve the thermal stability of betanin, the protective effect was: Lactoferrin>soy protein isolate>β-lactoglobulin≈rice protein. The improvement of the thermal stability of proteins to betanin was related to the formation of protein-betanin complex. The results of turbidity, UV spectrum and particle size experiments suggested that the affinity of betanin with lactoferrin, β-lactoglobulin and soy protein isolate was higher than that of rice protein, which might be caused by the low solubility and tight structure of rice protein. In addition, the results of interaction and molecular docking showed that lactoferrin and betanin were mainly bound through hydrogen bond and electrostatic interaction, hydrogen bond played a dominant role in the interaction between β-lactoglobulin and betanin, the main interaction between rice protein and betanin was hydrophobic interaction, and soy protein isolate bound to betanin mainly by hydrogen bond and electrostatic interaction. This study provides a theoretical basis for protein-natural pigment interaction and the research of protection of betanin.http://www.spgykj.com/cn/article/doi/10.13386/j.issn1002-0306.2022090301betaninproteininteractionthermal stabilitythermal protection
spellingShingle Ting HU
Jialong HAN
Qin GENG
Jun CHEN
Ti LI
Chengmei LIU
Xuemei HE
Taotao DAI
Study of the Thermal Protection Mechanism of Animal Proteins and Plant Proteins on Betanin
Shipin gongye ke-ji
betanin
protein
interaction
thermal stability
thermal protection
title Study of the Thermal Protection Mechanism of Animal Proteins and Plant Proteins on Betanin
title_full Study of the Thermal Protection Mechanism of Animal Proteins and Plant Proteins on Betanin
title_fullStr Study of the Thermal Protection Mechanism of Animal Proteins and Plant Proteins on Betanin
title_full_unstemmed Study of the Thermal Protection Mechanism of Animal Proteins and Plant Proteins on Betanin
title_short Study of the Thermal Protection Mechanism of Animal Proteins and Plant Proteins on Betanin
title_sort study of the thermal protection mechanism of animal proteins and plant proteins on betanin
topic betanin
protein
interaction
thermal stability
thermal protection
url http://www.spgykj.com/cn/article/doi/10.13386/j.issn1002-0306.2022090301
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AT qingeng studyofthethermalprotectionmechanismofanimalproteinsandplantproteinsonbetanin
AT junchen studyofthethermalprotectionmechanismofanimalproteinsandplantproteinsonbetanin
AT tili studyofthethermalprotectionmechanismofanimalproteinsandplantproteinsonbetanin
AT chengmeiliu studyofthethermalprotectionmechanismofanimalproteinsandplantproteinsonbetanin
AT xuemeihe studyofthethermalprotectionmechanismofanimalproteinsandplantproteinsonbetanin
AT taotaodai studyofthethermalprotectionmechanismofanimalproteinsandplantproteinsonbetanin