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乳铁蛋白水解物的降压作用:血管紧张素和内皮素转换酶的抑制作用。

Antihypertensive effects of lactoferrin hydrolyzates: Inhibition of angiotensin- and endothelin-converting enzymes.

机构信息

Departamento de Biotecnología de Alimentos, Instituto de Agroquímica y Tecnología de Alimentos, Consejo Superior de Investigaciones Científicas (CSIC), Ave. Agustín Escardino 7, 46980 Paterna, Valencia, Spain.

出版信息

Food Chem. 2013 Aug 15;139(1-4):994-1000. doi: 10.1016/j.foodchem.2012.12.049. Epub 2013 Jan 16.

Abstract

The potential of bovine lactoferrin (LF) as a source of antihypertensive peptides acting on the renin-angiotensin system (RAS) and the endothelin (ET) system as dual vasopeptidase inhibitors has been examined. For this purpose enzymatic LF hydrolyzates (LFHs) were generated by trypsin and proteinase K digestions. Permeate fractions with molecular masses lower than 3 kDa (LFH <3 kDa) were orally administered to spontaneously hypertensive rats (SHRs). Although both LFHs <3 kDa showed in vitro angiotensin I-converting enzyme (ACE)-inhibitory activity, only proteinase K LFH <3 kDa exerted an in vivo antihypertensive effect. The proteinase K LFH <3 kDa and a previously characterized pepsin LFH <3 kDa with ACE-inhibitory and antihypertensive effects were tested in ex vivo functional assays as inhibitors of ACE-dependent vasoconstriction. Pepsin LFH <3 kDa but not proteinase K LFH <3 kDa inhibited ACE-dependent vasoconstriction. When tested as inhibitors towards endothelin-converting enzyme (ECE), both LFHs <3 kDa exerted in vitro inhibitory effects on ECE activity and inhibited ECE-dependent vasoconstriction. Most abundant peptides in proteinase K LFH <3 kDa were identified by using an ion trap mass spectrometer. Based on peptide abundance, two peptides (GILRPY and REPYFGY) were chemically synthesized and their ECE-inhibitory activity was tested. Both exerted in vitro inhibitory effects on ECE activity. In conclusion, orally effective antihypertensive LFHs <3 kDa may act as dual vasopeptidase (ACE/ECE) or as single ECE inhibitors with different antivasoconstrictor effects depending on the protease used to release bioactive peptide sequences.

摘要

牛乳铁蛋白 (LF) 作为一种具有抗高血压作用的肽类物质的潜力,其作用靶点为肾素-血管紧张素系统 (RAS) 和内皮素 (ET) 系统,同时它也是一种双重血管肽酶抑制剂。为此,采用胰蛋白酶和蛋白酶 K 对 LF 进行酶解,生成 LF 水解产物 (LFH)。将相对分子质量低于 3 kDa 的透过组分 (LFH <3 kDa) 经口给予自发性高血压大鼠 (SHR)。虽然两种 LFH <3 kDa 均显示出体外血管紧张素 I 转换酶 (ACE) 抑制活性,但只有蛋白酶 K LFH <3 kDa 具有体内降压作用。蛋白酶 K LFH <3 kDa 和先前具有 ACE 抑制和降压作用的胃蛋白酶 LFH <3 kDa 均在体外功能测定中作为 ACE 依赖性血管收缩的抑制剂进行了测试。胃蛋白酶 LFH <3 kDa 但不是蛋白酶 K LFH <3 kDa 抑制 ACE 依赖性血管收缩。当作为内皮素转换酶 (ECE) 的抑制剂进行测试时,两种 LFH <3 kDa 均在体外对 ECE 活性具有抑制作用,并抑制 ECE 依赖性血管收缩。采用离子阱质谱仪对蛋白酶 K LFH <3 kDa 中的大量肽进行了鉴定。基于肽的丰度,合成了两种肽 (GILRPY 和 REPYFGY),并对其 ECE 抑制活性进行了测试。这两种肽均在体外对 ECE 活性具有抑制作用。总之,具有口服活性的降压 LFH <3 kDa 可能作为双重血管肽酶 (ACE/ECE) 或单一 ECE 抑制剂发挥作用,其抗血管收缩作用取决于用于释放生物活性肽序列的蛋白酶。

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