Wei Kang, Wei Yang, Zhou Peng, Zhu Jiangxiong, Peng Lanlan, Cheng Lizeng, Wang Yuanfeng, Wei Xinlin
School of Agriculture and Biology, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.
College of Life Science, Shanghai Normal University, 100 Guilin Road, Shanghai 200234, China.
Foods. 2023 Nov 12;12(22):4105. doi: 10.3390/foods12224105.
The research on the activity of selenium (Se)-enriched agricultural products is receiving increasing attention since Se was recognized for its antioxidant activities and for its enhancement of immunity in trace elements. In this study, antioxidant Se-containing peptides, namely, Se-TAPepI-1 and Se-TAPepI-2, were optimally separated and prepared from Se-enriched tea protein hydrolysates by ultrafiltration and Sephadex G-25 purification, and subsequently, their physicochemical properties, oligopeptide sequence, and potential antioxidant mechanism were analyzed. Through the optimization of enzymatic hydrolysis conditions, the Se-enriched tea protein hydrolyzed by papain exhibited a better free radical scavenging activity. After separation and purification of hydrolysates, the two peptide fractions obtained showed significant differences in selenium content, amino acid composition, apparent morphology, peptide sequence, and free radical scavenging activity. Therein, two peptides from Se-TAPepI-1 included LPMFG (563.27 Da) and YPQSFIR (909.47 Da), and three peptides from Se-TAPepI-2 included GVNVPYK (775.42 Da), KGGPGG (552.24 Da), and GDEPPIVK (853.45 Da). Se-TAPepI-1 and Se-TAPepI-2 could ameliorate the cell peroxidation damage and inflammation by regulating NRF2/ARE pathway expression. Comparably, Se-TAPepI-1 showed a better regulatory effect than Se-TAPepI-2 due to their higher Se content, typical amino acid composition and sequence, higher surface roughness, and a looser arrangement in their apparent morphology. These results expanded the functional activities of tea peptide and provided the theoretical basis for the development of Se-containing peptides from Se-enriched tea as a potential natural source of antioxidant dietary supplements.
自从硒因其抗氧化活性以及在微量元素中增强免疫力的作用而被人们认识以来,对富硒农产品活性的研究受到越来越多的关注。在本研究中,通过超滤和葡聚糖凝胶G - 25纯化从富硒茶蛋白水解物中优化分离并制备了抗氧化含硒肽,即Se - TAPepI - 1和Se - TAPepI - 2,随后分析了它们的理化性质、寡肽序列和潜在的抗氧化机制。通过优化酶解条件,木瓜蛋白酶水解的富硒茶蛋白表现出更好的自由基清除活性。水解物分离纯化后,得到的两个肽组分在硒含量、氨基酸组成、表观形态、肽序列和自由基清除活性方面存在显著差异。其中,Se - TAPepI - 1的两个肽包括LPMFG(563.27 Da)和YPQSFIR(909.47 Da),Se - TAPepI - 2的三个肽包括GVNVPYK(775.42 Da)、KGGPGG(552.24 Da)和GDEPPIVK(853.45 Da)。Se - TAPepI - 1和Se - TAPepI - 2可以通过调节NRF2/ARE通路表达来减轻细胞过氧化损伤和炎症。相比之下,Se - TAPepI - 1由于其较高的硒含量、典型的氨基酸组成和序列、较高的表面粗糙度以及表观形态上更松散的排列,显示出比Se - TAPepI - 2更好的调节作用。这些结果扩展了茶肽的功能活性,并为从富硒茶中开发含硒肽作为潜在的抗氧化膳食补充剂天然来源提供了理论依据。