超声波对狐尾黍麸皮蛋白水解物的表征和肽组学的影响

IF 8.7 1区 化学 Q1 ACOUSTICS Ultrasonics Sonochemistry Pub Date : 2024-08-24 DOI:10.1016/j.ultsonch.2024.107044
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引用次数: 0

摘要

蛋白水解物因其高生物活性而备受关注,是狐尾米糠副产品利用的重要产品形式。本研究调查了不同超声功率(0 - 600 W)下狐尾米糠蛋白水解物(FMBPHs)的结构、功能、活性和肽谱的变化。结果表明,超声促进了 FMBPHs 中的α-螺旋和β-片状结构向无规线圈和β-匝状结构的转变,以及疏水基团和巯基的暴露。样品的平均粒径减小,ζ电位的绝对值显著增加。此外,450 W 超声波处理还改善了 FMBPHs 的溶解性、发泡性、乳化性和热稳定性。样品的 DPPH、ABTS 和羟基自由基清除能力(IC50,2.65、1.06 和 3.02 mg/mL)、Fe2+ 螯合活性(IC50,2.62 mg/mL)和还原力也得到了提高。肽组学结果表明,超声处理增加了水解产物中活性肽的数量,在 450 W 的条件下,17 种活性肽的相对丰度明显提高。肽图分析表明,超声诱导的结构修饰影响了含泛素样结构域蛋白、含Cupin-1型结构域蛋白、40S核糖体蛋白S19和Oleosin 1的肽图,显示出某些肽的丰度发生了变化,这可能与FMBPHs特征的变化有关。
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Effect of ultrasound on the characterization and peptidomics of foxtail millet bran protein hydrolysates

Protein hydrolysates have attracted much attention for their high biological activity and are a crucial product form for the utilization of foxtail millet bran by-products. In this study, changes in the structure, functionality, activity and peptide profile of foxtail millet bran protein hydrolysates (FMBPHs) at different ultrasound powers (0 – 600 W) were investigated. The results showed that ultrasound promoted the transformation of α-helix and β-sheet to random coils and β-turn, and the exposure of hydrophobic groups and sulfhydryl groups in FMBPHs. The average particle size of the samples decreased, and the absolute value of the ζ-potential increased significantly. Simultaneously, smaller porous particles and loose fragments appeared on the surface of FMBPHs when the ultrasonic power was increased to 450 W. Additionally, 450 W ultrasound treatment improved solubility, foaming properties, emulsifying properties, thermal stability of FMBPHs. The DPPH, ABTS and hydroxyl radical scavenging ability (IC50, 2.65, 1.06 and 3.02 mg/mL), Fe2+ chelating activity (IC50, 2.62 mg/mL), and reducing power of the samples were also enhanced. The peptidomics results demonstrated that ultrasonication increased the number of active peptides in the hydrolysate, and the relative abundance of 17 active peptides was obviously elevated at 450 W. Peptide map analysis showed that ultrasound-induced structural modifications affected the peptide profiles of Ubiquitin-like domain-containing protein, Cupin type-1 domain-containing protein, 40S ribosomal protein S19, and Oleosin 1, showing changes in the abundance of certain peptides, which may be related to changes in the characterization of FMBPHs.

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来源期刊
Ultrasonics Sonochemistry
Ultrasonics Sonochemistry 化学-化学综合
CiteScore
15.80
自引率
11.90%
发文量
361
审稿时长
59 days
期刊介绍: Ultrasonics Sonochemistry stands as a premier international journal dedicated to the publication of high-quality research articles primarily focusing on chemical reactions and reactors induced by ultrasonic waves, known as sonochemistry. Beyond chemical reactions, the journal also welcomes contributions related to cavitation-induced events and processing, including sonoluminescence, and the transformation of materials on chemical, physical, and biological levels. Since its inception in 1994, Ultrasonics Sonochemistry has consistently maintained a top ranking in the "Acoustics" category, reflecting its esteemed reputation in the field. The journal publishes exceptional papers covering various areas of ultrasonics and sonochemistry. Its contributions are highly regarded by both academia and industry stakeholders, demonstrating its relevance and impact in advancing research and innovation.
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