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合成抗菌肽设计

Synthetic antimicrobial peptide design.

作者信息

Powell W A, Catranis C M, Maynard C A

机构信息

SUNY, College of Environmental Science and Forestry, Syracuse 13210, USA.

出版信息

Mol Plant Microbe Interact. 1995 Sep-Oct;8(5):792-4. doi: 10.1094/mpmi-8-0792.

Abstract

To guide the design of potential plant pathogen-resistance genes, synthetic variants of naturally occurring antimicrobial gene products were evaluated. Five 20-amino acid (ESF1, ESF4, ESF5, ESF6, ESF13), one 18-amino acid (ESF12), and one 17-amino acid (ESF17) amphipathic peptide sequences were designed, synthesized, and tested with in vitro bioassays. Positive charges on the hydrophilic side of the peptide were shown to be essential for antifungal activity, yet the number of positive charges could be varied with little or no change in activity. The size could be reduced to 18 amino acids, but at 17 amino acids a significant reduction in activity was observed. ESF1, 5, 6, and 12 peptides were inhibitory to the germination of conidia from Cryphonectria parasitica, Fusarium oxysporum f. sp. lycopersici, and Septoria musiva but did not inhibit the germination of pollen from Castanea mollissima and Salix lucida. ESF12 also had no effect on the germination of Malus sylvestris and Lycopersicon esculentum pollen, but inhibited the growth of the bacteria Agrobacterium tumefaciens, Erwinia amylovora, and Pseudomonas syringae. The minimal inhibitory concentrations of the active ESF peptides were similar to those of the naturally occurring control peptides, magainin II and cecropin B. The significant differential in sensitivity between the microbes and plant cells indicated that the active ESF peptides are potentially useful models for designing plant pathogen-resistance genes.

摘要

为指导潜在植物病原体抗性基因的设计,对天然存在的抗菌基因产物的合成变体进行了评估。设计、合成了5个20氨基酸(ESF1、ESF4、ESF5、ESF6、ESF13)、1个18氨基酸(ESF12)和1个17氨基酸(ESF17)的两亲性肽序列,并通过体外生物测定进行了测试。结果表明,肽亲水区的正电荷对抗真菌活性至关重要,然而正电荷数量可以变化,而活性几乎没有变化。肽的大小可以减少到18个氨基酸,但在17个氨基酸时,观察到活性显著降低。ESF1、5、6和12肽对栗疫菌、尖孢镰刀菌番茄专化型和杨生壳针孢的分生孢子萌发有抑制作用,但不抑制板栗和北美柳的花粉萌发。ESF12对森林苹果和番茄的花粉萌发也没有影响,但抑制了根癌土壤杆菌、梨火疫菌和丁香假单胞菌的生长。活性ESF肽的最小抑菌浓度与天然对照肽蛙皮素II和天蚕素B相似。微生物和植物细胞之间敏感性的显著差异表明,活性ESF肽是设计植物病原体抗性基因的潜在有用模型。

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