用微量板测定法测定血管紧张素转化酶抑制活性:使用海洋cryptides 进行比较,并与卡托普利和洛沙坦进行暂定阈值测定。

Measuring angiotensin-I converting enzyme inhibitory activity by micro plate assays: comparison using marine cryptides and tentative threshold determinations with captopril and losartan.

机构信息

Université de La Rochelle , Laboratoire LIENSs UMR CNRS-7266, Approches Moléculaires: Environnement Santé, site Marie Curie, UFR Sciences Technologies Santé , F-17042 La Rochelle, Cedex-1, France.

出版信息

J Agric Food Chem. 2013 Nov 13;61(45):10685-90. doi: 10.1021/jf403004e. Epub 2013 Oct 31.

Abstract

To determine the angiotensin-I converting enzyme (ACE) inhibitory activity of marine cryptides, different methods were tested. ACE inhibition was measured using two synthetic substrates, (N-[3-(2-furyl) acryloyl]-Phe-Gly-Gly (FAPGG) and N-hippuryl-His-Leu hydrate salt (HHL)), and a natural one, angiotensin-I. The IC50 value (defined as the concentration of inhibitory molecule needed to inhibit 50% of the ACE activity) of the reference synthetic inhibitor captopril was in the nanomolar range (1.79-15.1 nM) when synthetic substrates were used, whereas it exhibited IC50 of micromolar range (16.71 μM) with angiotensin-I. We chose losartan, an antagonist of angiotensin-II receptor as negative control for the ACE inhibition. Losartan was also able to inhibit ACE whatever the substrate tested, with IC50 of micromolar range (17.13-146 μM). We defined this value as a limit above which molecules are not showing in vitro ACE inhibitory activity. Val-Trp (VW), Val-Tyr (VY), Lys-Tyr (KY), Lys-Trp (KW), Ile-Tyr (IY), Ala-Pro (AP), Val-Ile-Tyr (VIY), Leu-Lys-Pro (LKP), Gly-Pro-Leu (GPL), Ala-Lys-Lys (AKK), and Val-Ala-Pro (VAP) were tested as inhibitors of ACE with synthetic and natural substrates. IC50 displayed were substrate-dependent. With FAPGG as substrate, IW, VAP, KY, IY, AP, AKK, and VIY show IC50 values over the IC50 value of losartan and should not be considered as inhibitors of ACE. VY, VW, KW, and LKP exhibited IC50 value lower than the IC50 value of losartan for all substrates tested and were thus considered as good candidates for effectively decreasing hypertension. It appears that the comparison of IC50 is not consistent when IC50 values are obtained with different substrates and different methods. In vitro ACE inhibitory activity assays should always include various ACE substrates and references such as captopril and a negative control to obtain data reliable to discriminate ACE inhibitory peptides.

摘要

为了测定海洋cryptides 的血管紧张素转化酶 (ACE) 抑制活性,测试了不同的方法。ACE 抑制作用采用两种合成底物((N-[3-(2-呋喃基)丙烯酰基]-苯丙氨酰-甘氨酰-甘氨酸(FAPGG)和 N- 马尿酸酰-L-组氨酰-L-亮氨酸水合物盐(HHL))和一种天然底物血管紧张素 I 来测定。参考合成抑制剂卡托普利的 IC50 值(定义为抑制 50%ACE 活性所需的抑制分子浓度)在使用合成底物时处于纳摩尔范围(1.79-15.1nM),而用血管紧张素 I 时则表现出微摩尔范围的 IC50(16.71μM)。我们选择血管紧张素 II 受体拮抗剂氯沙坦作为 ACE 抑制的阴性对照。无论测试哪种底物,氯沙坦都能够抑制 ACE,IC50 值处于微摩尔范围(17.13-146μM)。我们将此值定义为分子在体外不具有 ACE 抑制活性的上限。Val-Trp(VW)、Val-Tyr(VY)、Lys-Tyr(KY)、Lys-Trp(KW)、Ile-Tyr(IY)、Ala-Pro(AP)、Val-Ile-Tyr(VIY)、Leu-Lys-Pro(LKP)、Gly-Pro-Leu(GPL)、Ala-Lys-Lys(AKK)和 Val-Ala-Pro(VAP)被测试为具有合成和天然底物的 ACE 抑制剂。显示的 IC50 值取决于底物。用 FAPGG 作为底物时,IW、VAP、KY、IY、AP、AKK 和 VIY 的 IC50 值高于氯沙坦的 IC50 值,不应被视为 ACE 抑制剂。VY、VW、KW 和 LKP 在所有测试的底物中表现出低于氯沙坦的 IC50 值,因此被认为是有效降低高血压的良好候选物。似乎当使用不同的底物和方法获得 IC50 值时,IC50 值的比较并不一致。体外 ACE 抑制活性测定应始终包括各种 ACE 底物和参考物,如卡托普利和阴性对照,以获得可靠的数据来区分 ACE 抑制肽。

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