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食品水解产物中铜结合肽的富集与功能特性研究

Enrichment and functional characterization of copper-binding peptides from food hydrolysates.

作者信息

Fernandez Rebeca L, Lee Vanessa J, Janisse Samuel E, O'Sullivan Justin J, Caceres Amanda, Heffern Marie C

机构信息

Department of Chemistry, University of California, Davis One Shields Avenue Davis CA 95616 USA

出版信息

RSC Adv. 2025 Aug 28;15(37):30697-30710. doi: 10.1039/d5ra05166e. eCollection 2025 Aug 22.

Abstract

Imbalances in cellular copper are increasingly implicated in metabolic disorders. Food-derived peptides are gaining attention for their ability to alleviate metabolic disease symptoms with little to no toxicity. In this work, we enriched copper-binding peptides from enzymatic digestions of rice bran protein hydrolysates Cu(ii)-based immobilized-metal affinity-based separations, identified the sequences by mass spectrometry, and performed physicochemical and sequence analysis of the enriched peptides. A subset of the enriched peptides representing a range of sequences and hydrophobicities were synthesized and individually assessed further for their solution-based Cu(ii) reactivity and cellular activity. Among the peptides tested, Cu(ii)-binding was most potent with those containing a histidine as the second residue, reminiscent of pseudo-ATCUN motifs. Relative Cu(ii)-binding affinity showed good correlation with the ability of the peptides to reduce Cu(ii) reactivity, as measured with a reaction-based probe, while discrepancies in trends were observed in the scavenging activity of Cu(ii)-generated ROS. To test the hypothesis that solution-based Cu(ii)-binding properties predict cellular bioactivity, we assessed whether the individual Cu(ii)-binding peptides could recapitulate the previously reported AMPK activation in hepatocytes by whole rice bran hydrolysates. This represents a critical validation step for using metal-binding assays to predict biological function. While the majority of the peptides affected AMPK activation, the degree and direction varied in ways that Cu(ii) chelation could not explain, suggesting that the beneficial behavior of the hydrolysates cannot be simplified to its Cu(ii) reactivity. Nonetheless, we demonstrate a strategy for identifying putative metal-binding peptides from complex food-derived mixtures and characterizing their chemical and biological activity.

摘要

细胞内铜失衡与代谢紊乱的关联日益密切。食物来源的肽因其能在几乎无毒或无毒的情况下缓解代谢疾病症状而受到关注。在这项工作中,我们通过基于铜(II)固定化金属亲和的分离方法,从米糠蛋白水解物的酶解产物中富集铜结合肽,通过质谱鉴定其序列,并对富集的肽进行物理化学和序列分析。合成了一系列代表不同序列和疏水性的富集肽子集,并分别进一步评估它们在溶液中的铜(II)反应活性和细胞活性。在所测试的肽中,含有组氨酸作为第二个残基的肽与铜(II)的结合能力最强,这让人联想到假ATCUN基序。相对铜(II)结合亲和力与肽降低铜(II)反应活性的能力显示出良好的相关性,这是通过基于反应的探针测量的,而在用铜(II)产生的活性氧清除活性方面观察到趋势存在差异。为了检验基于溶液的铜(II)结合特性可预测细胞生物活性这一假设,我们评估了各个铜(II)结合肽是否能重现全米糠水解物先前报道的在肝细胞中激活AMPK的作用。这代表了使用金属结合测定来预测生物学功能的关键验证步骤。虽然大多数肽影响了AMPK的激活,但其程度和方向的变化方式无法用铜(II)螯合来解释,这表明水解物的有益行为不能简单地归结为其铜(II)反应活性。尽管如此,我们展示了一种从复杂的食物来源混合物中鉴定假定金属结合肽并表征其化学和生物活性的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9eaa/12394934/03daac2f63ed/d5ra05166e-f1.jpg

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