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Identification of Novel Hexapeptides Bioactive against Phytopathogenic Fungi through Screening of a Synthetic Peptide Combinatorial Library

机译:通过筛选合成肽组合文库鉴定对植物致病真菌具有生物活性的新型六肽

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摘要

The purpose of the present study was to improve the antifungal activity against selected phytopathogenic fungi of the previously identified hexapeptide PAF19. We describe some properties of a set of novel synthetic hexapeptides whose d-amino acid sequences were obtained through screening of a synthetic peptide combinatorial library in a positional scanning format. As a result of the screening, 12 putative bioactive peptides were identified, synthesized, and assayed. The peptides PAF26 (Ac-rkkwfw-NH2), PAF32 (Ac-rkwhfw-NH2), and PAF34 (Ac-rkwlfw-NH2) showed stronger activity than PAF19 against isolates of Penicillium digitatum, Penicillium italicum, and Botrytis cinerea. PAF26 and PAF32, but not PAF34, were also active against Fusarium oxysporum. Penicillium expansum was less susceptible to all four PAF peptides, and only PAF34 showed weak activity against it. Assays were also conducted on nontarget organisms, and PAF26 and PAF32 showed much-reduced toxicity to Escherichia coli and Saccharomyces cerevisiae, demonstrating selectivity towards certain filamentous fungi. Thus, the data showed distinct activity profiles for peptides differentiated by just one or two residue substitutions. Our conclusion from this observation is that a specificity factor is involved in the activity of these short peptides. Furthermore, PAF26 and PAF32 displayed activities against P. digitatum, P. italicum, and B. cinerea similar to that of the hemolytic 26-amino acid melittin, but they did not show the high toxicity of melittin towards bacteria and yeasts. The four peptides acted additively, with no synergistic interactions among them, and PAF26 was shown to have improved activity over PAF19 in in vivo orange fruit decay experiments.
机译:本研究的目的是提高针对先前鉴定的六肽PAF19的选定植物致病真菌的抗真菌活性。我们描述了一组新颖的合成六肽的一些特性,这些六肽的d-氨基酸序列是通过以位置扫描格式筛选合成肽组合文库获得的。筛选的结果是,鉴定,合成和测定了12种假定的生物活性肽。肽PAF26(Ac-rkkwfw-NH2),PAF32(Ac-rkwhfw-NH2)和PAF34(Ac-rkwlfw-NH2)对指状青霉,意大利青霉和灰霉菌的分离物显示出比PAF19更强的活性。 PAF26和PAF32,但不是PAF34,也对尖孢镰刀菌具有活性。扩展青霉对所有四个PAF肽均较不敏感,只有PAF34对其显示弱活性。还对非靶标生物进行了分析,PAF26和PAF32对大肠杆菌和酿酒酵母的毒性大大降低,表明对某些丝状真菌的选择性。因此,数据显示出仅通过一个或两个残基取代而分化的肽的不同活性谱。从该观察结果我们得出的结论是,特异性因子与这些短肽的活性有关。此外,PAF26和PAF32表现出的针对数指假单胞菌,意大利假单胞菌和灰质芽孢杆菌的活性类似于溶血的26个氨基酸的蜂毒素,但它们并未显示蜂毒素对细菌和酵母的高毒性。这四种肽具有加性作用,它们之间没有协同相互作用,并且在体内橙果实腐烂实验中,PAF26被证明比PAF19具有更高的活性。

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