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Natural ACE inhibitory peptides discovery from Spirulina (Arthrospira platensis) strain C1

机译:来自螺旋藻的天然ACE抑制肽(Arthrospira Platsensis)菌株C1

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摘要

Bioactive peptides from natural sources are utilized as food supplements for disease prevention and are increasingly becoming targets for drug discovery due to their specificity, efficacy and the absence of undesirable side effects, among others. Hence, the 'SpirPep' platform was developed to facilitate the in silico-based bioactive peptide discovery of these highly sought-after biomolecules from Spirulina(Arthrospira platensis) and to select the protease (thermolysin) used for in vitro digestion. Analysis of the predicted and experimentally-derived peptides suggested that they were mainly involved in ACE inhibition; thus, an ACEi assay was used to study the ACE inhibitory activity of five candidate peptides (SpirPep1-5), chosen from common peptides with multifunctional bioactivity and 100% bioactive peptide coverage, originating from phycobiliproteins. Results showed that SpirPep1 inhibited the activity of ACE with IC50 of 1.748 mM and was non-toxic to fibroblasts of African green monkey kidney and human dermal skin. The molecular docking and MD simulation analysis revealed SpirPep1 had significantly lower binding scores than others and showed greater specificity to ACE. The non-bonded interaction energy of SpirPep1 and ACE was -883 kJ/mol. The SpirPep1 indirectly bound to ACE via the ACE substrate binding sites residues (D121, E123, 5516, and 5517) found in natural ACE inhibitory peptides (angiotensin II and bradykinin potentiating peptides). In addition, two unreported substrate binding sites including R124 and S219 were found. These results indicate that ;SpirPep' platform could increase the success rate for natural bioactive peptide discovery.
机译:来自天然来源的生物活性肽被用作疾病预防的食物补充剂,越来越多地成为药物发现的目标,因为它们的特异性,疗效和不存在不良副作用等。因此,开发了“螺旋形”平台,以促进来自螺旋藻(Arthrospira Plantensis)的这些高度追捧的生物分子的基于基于基于的生物活性肽,并选择用于体外消化的蛋白酶(散热液)。对预测和实验衍生的肽的分析表明它们主要参与ACE抑制;因此,Acei测定用于研究五个候选肽(SpIroPep1-5)的ACE抑制活性,从常见的肽和100%生物活性肽覆盖范围内选择,来自植物胆素。结果表明,SpIrPep1抑制了IC50为1.748mm的ACE的活性,对非洲绿猴肾脏和人皮肤皮肤的成纤维细胞无毒。分子对接和MD仿真分析显示SpItPep1显着降低了比其他谱的结合分数显着降低,并且对ACE表现出更大的特异性。 SpIrPep1和Ace的非粘结相互作用能量为-883 kJ / mol。通过ACE底物结合位点(D121,E123,5516和5517)在天然ACE抑制肽(血管紧张素II和Bradykinin增强肽)中,螺旋PEP1间接地与ACE结合。另外,发现了包括R124和S219的两个未报告的底物结合位点。这些结果表明;螺旋状的平台可以增加天然生物活性肽发现的成功率。

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