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Structure and Bioactivity of a Modified Peptide Derived from the LPS-Binding Domain of an Anti-Lipopolysaccharide Factor (ALF) of Shrimp

机译:虾抗脂多糖因子(ALF)的LPS结合域衍生的修饰肽的结构和生物活性

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摘要

The lipopolysaccharide binding domain (LBD) in anti-lipopolysaccharide factor (ALF) is the main functional element of ALF, which exhibits antimicrobial activities. Our previous studies show that the peptide LBDv, synthesized based on the modified sequence of LBD (named LBD2) from FcALF2, exhibited an apparently enhanced antimicrobial activity. To learn the prospect of LBDv application, the characteristics of LBDv were analyzed in the present study. The LBDv peptide showed higher antimicrobial and bactericidal activities compared with LBD2. These activities of the LBDv peptide were stable after heat treatment. LBDv could also exhibit in vivo antimicrobial activity to Vibrio harveyi. The LBDv peptide was found to bind bacteria, quickly cause bacterial agglutination, and kill bacteria by damaging their membrane integrity. Structure analysis showed that both LBDv and LBD2 held the β-sheet structure, and the positive net charge and amphipathicity characteristic were speculated as two important components for their antimicrobial activity. The cytotoxicity of LBDv was evaluated in cultured Spodoptera frugiperda (Sf9) cells and Cherax quadricarinatus hemocytes. More than 80% cells could survive with the LBDv concentration up to 16 μM. Collectively, these findings highlighted the potential antimicrobial mechanism of LBD peptides, and provided important information for the commercial use of LBDv in the future.
机译:抗脂多糖因子(ALF)中的脂多糖结合结构域(LBD)是ALF的主要功能元件,具有抗菌活性。我们先前的研究表明,基于FcALF2的LBD修饰序列(命名为LBD2)合成的肽LBDv表现出明显增强的抗菌活性。为了了解LBDv的应用前景,本研究分析了LBDv的特性。与LBD2相比,LBDv肽具有更高的抗菌和杀菌活性。热处理后,LBDv肽的这些活性稳定。 LBDv还可能表现出对哈维弧菌的体内抗菌活性。发现LBDv肽结合细菌,迅速引起细菌凝集,并通过破坏细菌的膜完整性来杀死细菌。结构分析表明,LBDv和LBD2均具有β-折叠结构,正净电荷和两亲性特性被认为是其抗菌活性的两个重要组成部分。在培养的草地贪夜蛾(Sf9)细胞和Cherax quadricarinatus血细胞中评估了LBDv的细胞毒性。当LBDv浓度高达16μM时,超过80%的细胞可以存活。这些发现共同突出了LBD肽的潜在抗菌机制,并为将来的LBDv的商业使用提供了重要信息。

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