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Evaluating Molecular Mechanism of Hypotensive Peptides Interactions with Renin and Angiotensin Converting Enzyme

机译:降血压肽与肾素和血管紧张素转化酶相互作用的分子机理的评价

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摘要

Our previous study showed that three rapeseed protein-derived peptides (TF, LY and RALP) inhibited the in vitro activities of angiotensin converting enzyme (ACE) and renin. Oral administration of these peptides to spontaneously hypertensive rats led to reductions in systolic blood pressure. In the present work, we examined the potential molecular mechanisms responsible for the ACE- and renin-inhibitory activities of these peptides. Enzyme inhibition kinetics showed competitive, non-competitive and mixed-type peptide-dependent inhibition of renin and ACE activities. Intrinsic fluorescence intensity data showed that LY and RALP have stronger binding effects on ACE molecule compared to that of TF. LY and RALP showed the highest inhibition of ACE and renin activities, respectively. Circular dichroism data showed that the inhibitory mechanism involved extensive peptide-dependent reductions in α-helix and β-sheet fractions of ACE and renin protein conformations. Molecular docking studies confirmed that the higher renin-inhibitory activity of RALP may be due to formation of several hydrogen bonds (H-bonds) with the enzyme’s active site residues. The rapeseed peptides inhibited renin and ACE activities mostly through binding to enzyme active site or non-active sites and forming extensive H-bonds that distorted the normal configuration required for catalysis. Data presented from this work could enhance development of highly potent antihypertensive natural peptides or peptidomimetics.
机译:我们以前的研究表明,三种菜籽蛋白衍生肽(TF,LY和RALP)抑制了血管紧张素转化酶(ACE)和肾素的体外活性。对自发性高血压大鼠口服给予这些肽可导致收缩压降低。在目前的工作中,我们检查了负责这些肽的ACE和肾素抑制活性的潜在分子机制。酶抑制动力学显示竞争性,非竞争性和混合型肽依赖性肾素和ACE活性的抑制。固有荧光强度数据表明,与TF相比,LY和RALP对ACE分子的结合作用更强。 LY和RALP分别显示出对ACE和肾素活性的最高抑制作用。圆二色性数据表明,该抑制机制涉及ACE和肾素蛋白构象的α-螺旋和β-折叠部分的广泛的肽依赖性降低。分子对接研究证实了RALP较高的肾素抑制活性可能是由于与酶的活性位点残基形成了几个氢键(H键)。油菜籽肽主要通过与酶活性位点或非活性位点结合并形成广泛的氢键来抑制肾素和ACE活性,从而扭曲催化所需的正常构型。这项工作提供的数据可以增强高效降压天然肽或拟肽的开发。

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  • 年(卷),期 -1(9),3
  • 年度 -1
  • 页码 e91051
  • 总页数 11
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