大鼠摄入猪肝蛋白水解物后血液中存在具有β肽键的天冬氨酸二肽和/或d -天冬氨酸残留

A. Ejima, Kotaro Yamada, Kenji Sato
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引用次数: 5

摘要

背景:动物实验表明,口服猪肝蛋白水解物(LPH)可改善酒精诱导的肝毒性,以及运动和刀豆球蛋白a诱导的小鼠低运动活性。负责这种有益效果的肽尚未被鉴定。最近,在摄入其他食物蛋白质水解物后,已经检测到人类血液中存在食物衍生肽。这些肽是脯氨酰、羟丙基或焦谷氨酰二肽和三肽,并抵抗外肽酶消化。其中一些肽在体外和体内发挥着重要的生物学作用,这与摄入后的生物反应有关。本研究的目的是鉴定摄入LPH后大鼠血液中的食物来源肽。结果:在LPH的体外外肽酶消化中,鉴定出焦谷氨酰、脯氨酰、羟丙基和天冬氨酸二肽。天冬氨酸肽(Asp-Val、Asp-Ile、Asp-Leu和Asp-Phe)通过LC-MS/MS显示出多个峰,表明存在异构体。每个序列中存在四种具有L-和D-天冬氨酰残基以及α和β肽键的异构体。LPH给药后,大鼠血浆中具有β肽键和/或D-天冬氨酰残基的异常天冬氨酸二肽的量显著增加,而其他常见的天冬氨酸肽则没有。结论:肽中天冬氨酰残基的消旋化和异构化发生在LPH的制备过程中或消化后。这种不寻常的天冬氨酸肽具有进行多种生物活性的潜力。关键词:肽,食品蛋白水解物,天冬氨酸,异肽,生物利用度,D-氨基酸
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Presence of aspartic dipeptides with β peptide bond and/or D-aspartyl residue in rat blood after ingestion of porcine liver protein hydrolysate
Background: Animal experiments have demonstrated that oral administration of a porcine liver protein hydrolysate (LPH) ameliorates alcohol-induced liver toxicity, as well as exercise- and concanavalin A-induced low locomotor activity in mice. The peptides responsible for the beneficial effect have not yet been identified. Recently, presence of food-derived peptides in human blood has been detected post ingestion of other food protein hydrolysates. These peptides are prolyl, hydroxyprolyl, or pyroglutamyl di- and tri-peptides, and resist exopeptidase digestion. Some of these peptides exert significant biological roles in vitro and in vivo, which have been associated with the biological response post ingestion. The objective of the present study was to identify the food-derived peptides in rat blood after ingestion of LPH.Results: In the in vitro exopeptidase digest of LPH, pyroglutamyl, prolyl, hydroxyprolyl, and aspartic dipeptides were identified. The aspartic peptides (Asp-Val, Asp-Ile, Asp-Leu, and Asp-Phe) showed multiple peaks by LC-MS/MS, indicating the presence of isomers. Four isomers with L- and D-aspartyl residues, and α and β peptide bonds were present in each sequence. After administration of LPH, the amounts of unusual aspartic dipeptides with β peptide bond and/or D-aspartyl residue significantly increased in rat plasma, while those of the other usual aspartic peptides did not.Conclusions: Racemization and isomerization of aspartyl residues in peptides occur during the preparation of LPH or following its digestion. The unusual aspartic peptides have a potential for carrying out diverse biological activities.Key words: Peptide, food protein hydrolysate, aspartic, isopeptide, bioavailability, D-amino acid
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