首页> 美国卫生研究院文献>Biomolecules >Camel Hemorphins Exhibit a More Potent Angiotensin-I Converting Enzyme Inhibitory Activity than Other Mammalian Hemorphins: An In Silico and In Vitro Study
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Camel Hemorphins Exhibit a More Potent Angiotensin-I Converting Enzyme Inhibitory Activity than Other Mammalian Hemorphins: An In Silico and In Vitro Study

机译:骆驼血红素比其他哺乳动物血红素具有更强的血管紧张素-I转换酶抑制活性:计算机和体外研究

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摘要

Angiotensin-I converting enzyme (ACE) is a zinc metallopeptidase that has an important role in regulating the renin-angiotensin-aldosterone system (RAAS). It is also an important drug target for the management of cardiovascular diseases. Hemorphins are endogenous peptides that are produced by proteolytic cleavage of beta hemoglobin. A number of studies have reported various therapeutic activities of hemorphins. Previous reports have shown antihypertensive action of hemorphins via the inhibition of ACE. The sequence of hemorphins is highly conserved among mammals, except in camels, which harbors a unique Q>R variation in the peptide. Here, we studied the ACE inhibitory activity of camel hemorphins (LVVYPWTRRF and YPWTRRF) and non-camel hemorphins (LVVYPWTQRF and YPWTQRF). Computational methods were used to determine the most likely binding pose and binding affinity of both camel and non-camel hemorphins within the active site of ACE. Molecular dynamics simulations showed that the peptides interacted with critical residues in the active site of ACE. Notably, camel hemorphins showed higher binding affinity and sustained interactions with all three subsites of the ACE active site. An in vitro ACE inhibition assay showed that the IC of camel hemorphins were significantly lower than the IC of non-camel hemorphins.
机译:血管紧张素-I转换酶(ACE)是一种锌金属肽酶,在调节肾素-血管紧张素-醛固酮系统(RAAS)中具有重要作用。它也是控制心血管疾病的重要药物靶标。血红蛋白是通过蛋白水解切割β血红蛋白而产生的内源性肽。许多研究报告了血红素的各种治疗活性。以前的报道表明通过抑制ACE可以降低血红蛋白的降压作用。在哺乳动物中,除了在骆驼中具有独特的Q> R变异的骆驼外,血红蛋白的序列在哺乳动物中是高度保守的。在这里,我们研究了骆驼血红素(LVVYPWTRRF和YPWTRRF)和非骆驼血红素(LVVYPWTQRF和YPWTQRF)的ACE抑制活性。使用计算方法确定在ACE的活性位点内骆驼和非骆驼血红蛋白最可能的结合姿势和结合亲和力。分子动力学模拟表明,该肽与ACE活性位点中的关键残基相互作用。值得注意的是,骆驼血红蛋白显示出更高的结合亲和力,并与ACE活性位点的所有三个亚位点持续相互作用。体外ACE抑制试验表明,骆驼血红素的IC显着低于非骆驼血红素的IC。

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