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  1. AU="Jia, Lingyue"
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Article ; Online: Deciphering the interaction mechanism between soy protein isolate and fat-soluble anthocyanin on experiments and molecular simulations.

Wang, Xinhui / Jia, Lingyue / Xie, Yuqi / He, Tian / Wang, Shijiao / Jin, Xiaoyu / Xie, Fengying

International journal of biological macromolecules

2024  Volume 266, Issue Pt 2, Page(s) 131308

Abstract: In this work, the acylated anthocyanin (Ca-An) was prepared by enzymatic modification of black rice anthocyanin with caffeic acid, and the binding mechanism of Ca-An to soybean protein isolate (SPI) was investigated by experiments and computer simulation ...

Abstract In this work, the acylated anthocyanin (Ca-An) was prepared by enzymatic modification of black rice anthocyanin with caffeic acid, and the binding mechanism of Ca-An to soybean protein isolate (SPI) was investigated by experiments and computer simulation to expand the potential application of anthocyanin in food industry. Multi-spectroscopic studies revealed that the stable binding of Ca-An to SPI induced the folding of protein polypeptide chain, which transformed the secondary structure of SPI trended to be flexible. The microenvironment of protein was transformed from hydrophobic to hydrophilic, while tyrosine played dominant role in quenching process. The binding sites and forces of the complexes were determined by computer simulation for further explored. The protein conformation of the 7S and 11S binding regions to Ca-An changed, and the amino acid microenvironment shifted to hydrophilic after binding. The results showed that more non-polar amino acids existed in the binding sites, while in binding process van der Waals forces and hydrogen bonding played a major role hydrophobicity played a minor role. Based on MM-PBSA analysis, the binding constants of 7S-Ca-An and 11S-Ca-An were 0.518 × 10
MeSH term(s) Anthocyanins/chemistry ; Anthocyanins/metabolism ; Soybean Proteins/chemistry ; Soybean Proteins/metabolism ; Hydrophobic and Hydrophilic Interactions ; Molecular Dynamics Simulation ; Protein Binding ; Binding Sites ; Solubility ; Hydrogen Bonding
Chemical Substances Anthocyanins ; Soybean Proteins
Language English
Publishing date 2024-04-01
Publishing country Netherlands
Document type Journal Article
ZDB-ID 282732-3
ISSN 1879-0003 ; 0141-8130
ISSN (online) 1879-0003
ISSN 0141-8130
DOI 10.1016/j.ijbiomac.2024.131308
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