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Discovery of novel antimicrobial peptides: A transcriptomic study of the sea anemone Cnidopus japonicus

机译:新型抗菌肽的发现:海葵CNIDOPUS的转录组研究

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摘要

As essential conservative component of the innate immune systems of living organisms, antimicrobial peptides (AMPs) could complement pharmaceuticals that increasingly fail to combat various pathogens exhibiting increased resistance to microbial antibiotics. Among the properties of AMPs that suggest their potential as therapeutic agents, diverse peptides in the venoms of various predators demonstrate antimicrobial activity and kill a wide range of microorganisms. To identify potent AMPs, the study reported here involved a transcriptomic profiling of the tentacle secretion of the sea anemone Cnidopus japonicus. An in silico search algorithm designed to discover toxin-like proteins containing AMPs was developed based on the evaluation of the properties and structural peculiarities of amino acid sequences. The algorithm revealed new proteins of the anemone containing antimicrobial candidate sequences, and 10 AMPs verified using high-throughput proteomics were synthesized. The antimicrobial activity of the candidate molecules was experimentally estimated against Gram-positive and -negative bacteria. Ultimately, three peptides exhibited antimicrobial activity against bacterial strains, which suggests that the method can be applied to reveal new AMPs in the venoms of other predators as well.
机译:作为生物体的先天免疫系统的基本保守组分,抗微生物肽(AMPS)可以补充药物,这些药物越来越多地对抗各种病原体表现出对微生物抗生素的增加的抗性。 AMPS的性质,表明其作为治疗剂的潜力,各种捕食者的毒液中的多种肽显示出抗微生物活性并杀死各种微生物。为了识别有效的安培,研究报告涉及海葵CNIDopus japonicus海葵分泌的转录组分析。基于氨基酸序列的性质和结构特性的评估,开发了设计用于发现含有AMPS的含有AMPS的毒素的蛋白质的Silico搜索算法。该算法揭示了含有抗微生物候选序列的海葵的新蛋白质,合成了使用高通量蛋白质组学验证的10安培。候选分子的抗微生物活性针对革兰氏阳性和阴性细菌进行了实验估计。最终,三种肽表现出针对细菌菌株的抗微生物活性,这表明该方法也可以应用于揭示其他捕食者的毒液中的新安培。

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