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Identification of bioactive peptide from Oreochromis niloticus skin gelatin

机译:尼罗罗非鱼皮肤明胶中生物活性肽的鉴定

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摘要

Fish skin, one type of wastes generated from Nile tilapia processing, is still a good source of collagen and gelatin. Bioactive peptides can be obtained from Nile tilapia skin gelatin by trypsin digestion. Trypsin hydrolysate was subsequently purified by gel filtration chromatography. Trypsin A fraction showed the greatest reducing power (5.138 ± 1.060 μM trolox/mg peptide) among all hydrolysate fractions, while trypsin B fraction from gel filtration column was found to exhibit the best radical scavenging and angiotensin-I-converting enzyme (ACE) inhibitory activities 8.16 ± 2.18 μg trolox/mg peptide and 59.32 ± 9.97 % inhibition, respectively. The most active fraction was subjected to MALDI-TOF/TOF MS/MS. After annotation by Mascot sequence matching software (Matrix Science) with Ludwig NR Database, two peptide sequences were identified; GPEGPAGAR (MW 810.87 Da) and GETGPAGPAGAAGPAGPR (MW 1490.61 Da). The docking analysis suggested that the shape of the shorter peptide may be slightly more proper, to fit into the binding cleft of the ACE. However, the binding affinities calculated from the docking showed no significant difference between the two peptides. In good agreement with the in silico data, results from the in vitro ACE inhibitory activity with synthetic peptides also showed no significant difference. Both peptides are thus interesting novel candidates suitable for further development as ACE inhibitory and antioxidant agents from the natural source.
机译:鱼皮是尼罗罗非鱼加工产生的一种废物,仍然是胶原蛋白和明胶的良好来源。可以通过胰蛋白酶消化从尼罗罗非鱼皮肤明胶中获得生物活性肽。随后通过凝胶过滤色谱法纯化胰蛋白酶水解产物。胰蛋白酶A馏分在所有水解产物中显示出最大的还原能力(5.138±1.060μMtrolox / mg肽),而凝胶过滤柱中的胰蛋白酶B馏分表现出最佳的自由基清除和血管紧张素-I转化酶(ACE)抑制作用活性分别为8.16±2.18μgtrolox / mg肽和59.32±9.97%的抑制率。活性最高的馏分经过MALDI-TOF / TOF MS / MS处理。在通过Mascot序列匹配软件(Matrix Science)与Ludwig NR数据库进行注释后,鉴定了两个肽序列。 GPEGPAGAR(兆瓦810.87 Da)和GETGPAGPAGAAGAGPAGPR(兆瓦1490.61 Da)。对接分析表明,较短的肽的形状可能稍微合适一些,以适合ACE的结合缝隙。然而,由对接计算的结合亲和力显示两种肽之间没有显着差异。与计算机模拟数据高度吻合,合成肽在体外对ACE的抑制作用结果也无显着差异。因此,两种肽都是有趣的新型候选物,适合作为天然来源的ACE抑制剂和抗氧化剂进行进一步开发。

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