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首页> 外文期刊>Biological chemistry >The insect-derived antimicrobial peptide metchnikowin targets Fusarium graminearum beta(1,3)-glucanosyltransferase Gel1, which is required for the maintenance of cell wall integrity
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The insect-derived antimicrobial peptide metchnikowin targets Fusarium graminearum beta(1,3)-glucanosyltransferase Gel1, which is required for the maintenance of cell wall integrity

机译:昆虫衍生的抗微生物肽Metchnikowin靶向镰刀酸纤维葡萄糖β(1,3) - 葡聚糖转移酶GEL1,这是维持细胞壁完整性所必需的

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摘要

Antimicrobial peptides (AMPs) are essential components of the insect innate immune system. Their diversity provides protection against a broad spectrum of microbes and they have several distinct modes of action. Insect-derived AMPs are currently being developed for both medical and agricultural applications, and their expression in transgenic crops confers resistance against numerous plant pathogens. The antifungal peptide metchnikowin (Mtk), which was originally discovered in the fruit fly Drosophila melanogaster, is of particular interest because it has potent activity against economically important phytopathogenic fungi of the phylum Ascomycota, such as Fusarium graminearum, but it does not harm beneficial fungi such as the mycorrhizal basidiomycete Piriformospora indica. To investigate the specificity of Mtk, we used the peptide to screen a F. graminearum yeast two-hybrid library. This revealed that Mtk interacts with the fungal enzyme beta(1,3)-glucanosyltransferase Gel1 (FgBGT), which is one of the enzymes responsible for fungal cell wall synthesis. The interaction was independently confirmed in a second interaction screen using mammalian cells. FgBGT is required for the viability of filamentous fungi by maintaining cell wall integrity. Our study therefore paves the way for further applications of Mtk in formulation of bio fungicides or as a supplement in food preservation.
机译:抗微生物肽(AMPS)是昆虫天生免疫系统的必要组分。它们的多样性提供了对广谱的微生物的保护,并且它们具有几种不同的作用方式。目前正在为医学和农业应用开发昆虫衍生的放大器,它们在转基因作物中的表达赋予耐受许多植物病原体的抵抗力。最初在果蝇果蝇的雌孢菌果蝇中发现的抗真菌肽核尿素(MTK)是特别令人感兴趣的,因为它具有富含镰刀菌的经济学上重要的植物致病性真菌的有效活性,例如镰刀菌,但它不会损害有益的真菌如菌根碱菌丝吡虫菊孢子蛋白籼稻。为了探讨MTK的特异性,我们使用肽筛选F. Graminearum酵母双杂交文库。这表明MTK与真菌酶β(1,3) - 葡聚糖转移酶GEL1(FGBGT)相互作用,这是负责真菌细胞壁合成的酶之一。使用哺乳动物细胞在第二个相互作用筛网中独立地确认相互作用。通过维持细胞壁完整性,丝状真菌的活力需要FGBGT。因此,我们的研究为MTK进一步铺平了Bio杀菌剂或作为食物保存的补充的方法铺平了道路。

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