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首页> 外文期刊>Innovative Food Science & Emerging Technologies >Identification of a novel angiotensin-I converting enzyme inhibitory peptide from ostrich egg white and studying its interactions with the enzyme.
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Identification of a novel angiotensin-I converting enzyme inhibitory peptide from ostrich egg white and studying its interactions with the enzyme.

机译:从鸵鸟蛋白中鉴定出一种新的血管紧张素-I转换酶抑制肽,并研究其与酶的相互作用。

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Ostrich egg white (OEW) proteins were hydrolyzed by trypsin to identify inhibitory peptides of angiotensin I-converting enzyme (ACE). The most active hydrolysate was obtained after 4 h of hydrolysis. It was further consecutively fractionized by ultrafiltration membrane and then was separated into nine fractions by reversed-phase high performance liquid chromatography (RP-HPLC). Among the fractions, the F3 fraction with amino acid sequence of Ala-Phe-Lys-Asp-Glu-Asp-Thr-Glu-Glu-Val-Pro-Phe-Arg (MW: 1582.74Da) and IC50 80.2 muM exhibited the highest ACE inhibitory activity. Kinetic studies revealed that the F3 peptide acts as a non-competitive inhibitor against ACE. The interaction between the F3 peptide and ACE was further scrutinized by fluorescence spectroscopy and molecular modeling techniques. The binding of the F3 peptide to ACE was observed to occur via two classes of binding sites and F3 had more affinity to N-domain than C-domain. Industrial relevance: Angiotensin converting enzyme (ACE) can increase blood pressure by catalyzing the conversion of the inactive angiotensin-I to the strong vasoconstrictor angiotensin-II. Inhibition of ACE by decreasing the concentration of angiotensin II is of great importance. In this study, a thirteen-amino acid peptide was identified from ostrich egg white (OEW) hydrolysates which can potently inhibit ACE. Thus, the identified peptide could be considered as a worthwhile peptide to control hypertension via using as a supplement for special food products. Furthermore, the results can be used as a model for studying the interaction of inhibitory peptides with ACE
机译:鸵鸟蛋清(OEW)蛋白被胰蛋白酶水解,以鉴定血管紧张素I转换酶(ACE)的抑制肽。水解4小时后,获得活性最高的水解产物。通过超滤膜将其进一步连续分级,然后通过反相高效液相色谱法(RP-HPLC)将其分离成九个级分。在这些馏分中,具有Ala-Phe-Lys-Asp-Glu-Asp-Thr-Glu-Glu-Val-Pro-Phe-Arg氨基酸序列的F 3 馏分(MW:1582.74Da )和IC 50 80.2μM表现出最高的ACE抑制活性。动力学研究表明,F 3 肽可作为ACE的非竞争性抑制剂。通过荧光光谱和分子建模技术进一步研究了F 3 肽与ACE的相互作用。观察到F 3 肽与ACE的结合是通过两类结合位点发生的,并且F3对N-结构域的亲和力大于C-结构域。工业相关性:血管紧张素转化酶(ACE)可以通过催化非活性血管紧张素-I向强血管收缩血管紧张素-II的转化来增加血压。通过降低血管紧张素II的浓度来抑制ACE非常重要。在这项研究中,从鸵鸟蛋清(OEW)水解物中鉴定出13个氨基酸的肽,可以有效地抑制ACE。因此,通过用作特殊食品的补充剂,鉴定出的肽可以被认为是控制高血压的有价值的肽。此外,该结果可以用作研究抑制肽与ACE相互作用的模型

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