Abioye Raliat O, Acquah Caleb, Hsu Pei Chun Queenie, Hüttmann Nico, Sun Xiaohong, Udenigwe Chibuike C
Department of Chemistry and Biomolecular Sciences, Faculty of Science, University of Ottawa, Ottawa, ON K1N 6N5, Canada.
School of Nutrition Sciences, Faculty of Health Sciences, University of Ottawa, Ottawa, ON K1H 8M5, Canada.
Gels. 2022 Oct 9;8(10):641. doi: 10.3390/gels8100641.
Egg white protein hydrolysate generated with pepsin was investigated for the presence of peptides with self-assembly and hydrogelation properties. Incubation of the hydrolysates for 16 h resulted in aggregates with significantly (p < 0.05) lower free amino nitrogen and sulfhydryl contents, and higher particle diameter and surface hydrophobicity compared to the hydrolysates. LC-MS/MS analysis of the aggregates resulted in identification of 429 ovalbumin-derived peptides, among which the top-six aggregation-prone peptides IFYCPIAIM, NIFYCPIAIM, VLVNAIVFKGL, YCPIAIMSA, MMYQIGLF, and VYSFSLASRL were predicted using AGGRESCAN by analysis of the aggregation “Hot Spots”. NIFYCPIAIM had the highest thioflavin T fluorescence intensity, particle diameter (5611.3 nm), and polydispersity index (1.0) after 24 h, suggesting the formation of β-sheet structures with heterogeneous particle size distribution. Transmission electron microscopy of MMYQIGLF, and VYSFSLASRL demonstrated the most favorable peptide self-assembly, based on the formation of densely packed, intertwined fibrils. Rheological studies confirmed the viscoelastic and mechanical properties of the hydrogels, with IFYCPIAIM, NIFYCPIAIM, VLVNAIVFKGL, and VYSFSLASRL forming elastic solid hydrogels (tan δ < 1), while YCPIAIMSA and MMYQIGLF formed viscous liquid-like hydrogels (tan δ > 1). The results provide valuable insight into the influence of peptide sequence on hydrogelation and self-assembly progression, and prospects of food peptides in biomaterial applications.
研究了用胃蛋白酶生成的蛋清蛋白水解物中具有自组装和水凝胶化特性的肽的存在情况。与水解物相比,水解物孵育16小时后形成的聚集体具有显著更低(p < 0.05)的游离氨基氮和巯基含量,以及更高的粒径和表面疏水性。对聚集体进行LC-MS/MS分析,鉴定出429种卵清蛋白衍生肽,其中通过分析聚集“热点”,使用AGGRESCAN预测出前六种易于聚集的肽IFYCPIAIM、NIFYCPIAIM、VLVNAIVFKGL、YCPIAIMSA、MMYQIGLF和VYSFSLASRL。24小时后,NIFYCPIAIM具有最高的硫黄素T荧光强度、粒径(5611.3 nm)和多分散指数(1.0),表明形成了具有异质粒径分布的β-折叠结构。MMYQIGLF和VYSFSLASRL的透射电子显微镜显示,基于紧密堆积、相互交织的纤维的形成,肽的自组装最为有利。流变学研究证实了水凝胶的粘弹性和机械性能,IFYCPIAIM、NIFYCPIAIM、VLVNAIVFKGL和VYSFSLASRL形成弹性固体水凝胶(tan δ < 1),而YCPIAIMSA和MMYQIGLF形成粘性液体状水凝胶(tan δ > 1)。这些结果为肽序列对水凝胶化和自组装进程的影响以及食品肽在生物材料应用中的前景提供了有价值的见解。