首页> 美国卫生研究院文献>Marine Drugs >pH-Dependent Solution Structure and Activity of a Reduced Form of the Host-Defense Peptide Myticin C (Myt C) from the Mussel Mytilus galloprovincialis
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pH-Dependent Solution Structure and Activity of a Reduced Form of the Host-Defense Peptide Myticin C (Myt C) from the Mussel Mytilus galloprovincialis

机译:pH依赖的溶液结构和还原形式的贻贝Mytilus galloprovincialis的宿主防御肽Myticin C(Myt C)的还原形式和活性

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摘要

Myticin C (Myt C) is a highly variable host-defense peptide (HDP) associated to the immune response in the mediterranean mussel (Mytilus galloprovincialis), which has shown to be active across species due to its strong antiviral activity against a fish rhabdovirus found in fish cells overexpressing this HDP. However, the potential antimicrobial properties of any synthetic analogue of Myt C has not yet been analysed. Thus, in this work we have synthesised the sequence of the mature peptide of Myt C variant c and analysed the structure activity relationships of its reduced (non-oxidized) form (red-MytCc). In contrast to results previously reported for oxidized isoforms of mussel myticins, red-MytCc was not active against bacteria at physiological pH and showed a moderate antiviral activity against the viral haemorrhagic septicaemia (VHS) rhabdovirus. However, its chemotactic properties remained active. Structure/function studies in neutral and acid environments by means of infrared spectroscopy indicated that the structure of red-MytCc is pH dependent, with acid media increasing its alpha-helical content. Furthermore, red-MytCc was able to efficiently aggregate artificial phospholipid membranes at low pH, as well as to inhibit the Escherichia coli growth, suggesting that this activity is attributable to its more structured form in an acidic environment. All together, these results highlight the dynamic and environmentally sensitive behavior of red-Myt C in solution, and provide important insights into Myt C structure/activity relationships and the requirements to exert its antimicrobial/immunomodulatory activities. On the other hand, the pH-dependent direct antimicrobial activity of Myt C suggests that this HDP may be a suitable template for the development of antimicrobial agents that would function selectively in specific pH environments, which are sorely needed in this “antibiotic-resistance era”.
机译:Myticin C(Myt C)是一种与地中海贻贝(Mytilus galloprovincialis)的免疫反应相关的高度可变的宿主防御肽(HDP),由于其对鱼类弹状病毒的强抗病毒活性,因此已显示出跨物种的活性。在鱼细胞中过表达该HDP。但是,尚未对Myt C的任何合成类似物的潜在抗菌特性进行分析。因此,在这项工作中,我们合成了Myt C变体c的成熟肽的序列,并分析了其还原(非氧化)形式(red-MytCc)的结构活性关系。与先前报道的贻贝myticins氧化亚型的结果相反,red-MytCc在生理pH下对细菌没有活性,对病毒性败血病(VHS)弹状病毒表现出中等的抗病毒活性。然而,它的趋化性质保持活跃。在中性和酸性环境中通过红外光谱进行的结构/功能研究表明,红色MytCc的结构是pH依赖性的,酸性介质会增加其α-螺旋含量。此外,红色MytCc能够在低pH值下有效聚集人工磷脂膜,并抑制大肠杆菌的生长,这表明该活性可归因于其在酸性环境中的更结构化形式。总之,这些结果突出了溶液中红色Myt C的动态和环境敏感性行为,并提供了对Myt C结构/活性关系以及发挥其抗菌/免疫调节活性要求的重要见解。另一方面,Myt C的pH依赖性直接抗微生物活性表明,该HDP可能是开发可在特定pH环境中选择性发挥作用的抗微生物剂的合适模板,而在此“抗抗生素时代”迫切需要”。

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