首页> 外文期刊>Journal of Functional Foods >Underlying action mechanism of a novel antioxidant peptide derived from Allium tuberosum Rottler protein hydrolysates and its protective effects on hydrogen peroxide induced cell injury
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Underlying action mechanism of a novel antioxidant peptide derived from Allium tuberosum Rottler protein hydrolysates and its protective effects on hydrogen peroxide induced cell injury

机译:新型抗氧化剂肽的基础作用机理衍生自葱属罗勒蛋白水解产物及其对过氧化氢致细胞损伤的保护作用

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摘要

A novel antioxidant peptide from protein hydrolysate of Allium tuberosum Rottler was identified as Phe-Pro-Leu-Pro-Ser-Phe (FF-6). It could not only quench multiple radicals efficiently, but also promote cell survival by protecting against oxidative damage. The residue Leu played a vital role in radical-scavenging process and interaction with ABTS(center dot) (+) radicals. When substituted residue Leu with Ala, the radical-scavenging capacity and cytoprotective effect of FF-6 were almost lost. Moreover, the peptide could increase the expression level of proteins PI3K, Akt, phospho-Akt, mTOR, phospho-mTOR, but not affect peroxiredoxin-6. According to these results, the potential mechanism responsible for the protection of oxidative damage and promotion of cell survival was taken place through the PI3K/Akt/mTOR signaling pathway. These findings could be helpful for better elucidating the antioxidant mechanism and shed light on synthetic of alternative antioxidants with more potent activity as nutraceuticals or pharmaceuticals.
机译:从艾伯斯雷兰唑氏菌蛋白水解产物的一种新型抗氧化肽被鉴定为PHE-Pro-Leu-Pro-Ser-PHE(FF-6)。它不仅可以有效地淬火多种激进,而且通过防止氧化损伤,促进细胞存活。残留物Leu在激进的清除过程中发挥了重要作用,与ABTS(中心点)(+)自由基相互作用。当用ALA取代残留物血清时,FF-6的自由基清除能力和细胞保护作用几乎丢失。此外,肽可以增加蛋白质PI3K,AKT,磷酸-AKT,MTOR,磷酸盐 - MTOR的表达水平,但不影响过洛昔洛蛋白-6。根据这些结果,通过PI3K / AKT / MTOR信号通路进行负责保护氧化损伤和促进细胞存活的潜在机制。这些发现可以有助于更好地阐明抗氧化机制和脱落的替代抗氧化剂的脱落,具有更有效的活性作为营养保健品或药物。

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