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首页> 外文期刊>Peptides: An International Journal >Whey peptide Isoleucine-Tryptophan inhibits expression and activity of matrix metalloproteinase-2 in rat aorta
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Whey peptide Isoleucine-Tryptophan inhibits expression and activity of matrix metalloproteinase-2 in rat aorta

机译:乳清肽异亮氨酸色氨酸抑制大鼠主动脉中基质金属蛋白酶-2的表达和活性

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Aortic stiffness is an independent risk factor for development of cardiovascular diseases. Activation of renin-angiotensin-aldosterone system (RAAS) including angiotensin converting enzyme (ACE) activity leads to overproduction of angiotensin II (ANGII) from its precursor angiotensin I (ANGI). ANGII leads to overexpression and activation of matrix metalloproteinase-2 (MMP2), which is critically associated with pathophysiology of aortic stiffness. We previously reported that the whey peptide Isoleucine-Tryptophan (IW) acts as a potent ACE inhibitor. Herein, we critically elucidate the mechanism of action by which IW causes inhibition of expression and activity of MMP2 in aortic tissue. Effects of IW on expression and activity of MMP2 were assessed on endothelial and smooth muscle cells (ECs and SMCs) in vitro and ex vivo (isolated rat aorta). As controls we used the pharmaceutical ACE inhibitor - captopril and the ANGII type 1 receptor blocker - losartan. In vitro, both ANGII and ANGI stimulation significantly (P< 0.01) increased expression of MMP2 assessed with western blot. Similarly, to captopril IW significantly (P < 0.05) inhibited ANGI, but not ANGII mediated increase in expression of MMP2, while losartan also blocked effects of ANGII. Signaling pathways regulating MMP2 expression in ECs and SMCs were similarly inhibited after treatment with IW or captopril. In ECs IW significantly (P< 0.05) inhibited JNK pathway, whereas in SMCs JAK2/STAT3 pathway, assessed with western blot. In vitro findings were fully consistent with results in isolated rat aorta ex vivo. Moreover, IW not only inhibited the MMP2 expression, but also its activation assessed with gelatin zymography. Our findings demonstrate that IW effectively inhibits expression and activation of MMP2 in rat aorta by decreasing local conversion of ANGI to ANGII. Thus, similar to pharmaceutical ACE inhibitor captopril the dipeptide IW may effectively inhibit ACE activity and prevent the age and hypertension associated rise of aortic stiffness. (C) 2016 Elsevier Inc. All rights reserved.
机译:主动脉僵硬是心血管疾病发展的独立风险因素。包括血管紧张素转化酶(ACE)活性的肾素-血管紧张素-醛固酮系统(RAAS)的激活导致血管紧张素II(ANGII)从其前体血管紧张素I(ANGI)的过量生产。 ANGII导致基质金属蛋白酶2(MMP2)的过表达和激活,这与主动脉僵硬的病理生理至关重要。我们之前曾报道过,乳清肽异亮氨酸-色氨酸(IW)可作为有效的ACE抑制剂。在本文中,我们关键性地阐明了IW引起主动脉组织中MMP2表达和活性抑制的作用机理。在体外和离体(分离的大鼠主动脉)的内皮和平滑肌细胞(EC和SMC)上评估了IW对MMP2表达和活性的影响。作为对照,我们使用了药物ACE抑制剂-卡托普利和ANGII 1型受体阻滞剂-氯沙坦。在体外,用蛋白质印迹法评估,ANGII和ANGI刺激均显着(P <0.01)增加了MMP2的表达。同样,卡托普利IW显着(P <0.05)抑制ANGI,但不抑制ANGII介导的MMP2表达增加,而氯沙坦也阻断ANGII的作用。用IW或卡托普利治疗后,调节EC和SMC中MMP2表达的信号通路同样受到抑制。在Western blot中,IW在EC中显着(P <0.05)抑制JNK途径,而在SMC中,JAK2 / STAT3途径受到抑制。体外发现与离体大鼠主动脉离体结果完全一致。此外,IW不仅抑制MMP2表达,而且通过明胶酶谱评估其激活。我们的发现表明,IW通过减少ANGI向ANGII的局部转化,有效抑制了大鼠主动脉中MMP2的表达和激活。因此,类似于药物ACE抑制剂卡托普利,二肽IW可有效抑制ACE活性并防止年龄和高血压相关的主动脉僵硬度的升高。 (C)2016 Elsevier Inc.保留所有权利。

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