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首页> 外文期刊>Plant Molecular Biology >Novel antifungal a-hairpinin peptide from Stellaria media seeds: structure, biosynthesis, gene structure and evolution
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Novel antifungal a-hairpinin peptide from Stellaria media seeds: structure, biosynthesis, gene structure and evolution

机译:恒星种子中的新型抗真菌α-发夹蛋白肽:结构,生物合成,基因结构和进化

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摘要

Plant defense against disease is a complex multistage system involving initial recognition of the invading pathogen, signal transduction and activation of specialized genes. An important role in pathogen deterrence belongs to so-called plant defense peptides, small polypeptide molecules that present antimicrobial properties. Using multidimensional liquid chromatography, we isolated a novel antifungal peptide named Sm-AMP-X (33 residues) from the common chickweed (Stellaria media) seeds. The peptide sequence shows no homology to any previously described proteins. The peculiar cysteine arrangement (C~1X_3C~2X_nC~3X_3C~4), however, allocates Sm- AMP-X to the recently acknowledged a-hairpinin family of plant defense peptides that share the helix-loop-helix fold stabilized by two disulfide bridges C~1-C~4 and C~2-C~3. Sm-AMP-X exhibits high broad-spectrum activity against fungal phytopathogens. We further showed that the N- and C-terminal "tail" regions of the peptide are important for both its structure and activity. The truncated variants Sm-AMP-X1 with both disulfide bonds preserved and Sm-AMP-X2 with only the internal S-S-bond left were progressively less active against fungi and presented largely disordered structure as opposed to the predominantly helical conformation of the full-length antifungal peptide. cDNA and gene cloning revealed that Sm-AMP-X is processed from a unique multimodular precursor protein that contains as many as 12 tandem repeats of a-hairpinin-like peptides. Structure of the sm-amp-x gene and two related pseudogenes sm-amp-x-ψ1 and sm-amp-x-ψ2 allows tracing the evolutionary scenario that led to generation of such a sophisticated precursor protein. Sm-AMP-X is a new promising candidate for engineering disease resistance in plants.
机译:植物对疾病的防御是一个复杂的多阶段系统,涉及入侵病原体的初步识别,信号转导和特殊基因的激活。在病原体威慑中的重要作用属于所谓的植物防御肽,即具有抗菌特性的小多肽分子。使用多维液相色谱,我们从常见的杂草(Stellaria培养基)种子中分离了一种名为Sm-AMP-X(33个残基)的新型抗真菌肽。肽序列与任何先前描述的蛋白质均无同源性。然而,奇特的半胱氨酸排列(C〜1X_3C〜2X_nC〜3X_3C〜4)将Sm-AMP-X分配给了最近认可的植物防御肽a-hairpinin家族,该家族具有两个环环被两个二硫键稳定的螺旋结构C〜1-C〜4和C〜2-C〜3。 Sm-AMP-X对真菌的植物病原体表现出很高的广谱活性。我们进一步表明,该肽的N和C端“尾部”区域对于其结构和活性均很重要。具有保留的二硫键的截短的变体Sm-AMP-X1和仅具有内部SS键的截短的Sm-AMP-X2对真菌的活性逐渐降低,并呈现出很大程度上无序的结构,这与全长的螺旋构象相反抗真菌肽。 cDNA和基因克隆表明,Sm-AMP-X是由独特的多模块前体蛋白加工而成的,该蛋白包含多达12个a-发夹蛋白样肽的串联重复序列。 sm-amp-x基因和两个相关假基因sm-amp-x-ψ1和sm-amp-x-ψ2的结构可以追踪导致这种复杂前体蛋白生成的进化情况。 Sm-AMP-X是植物抗病性工程的一种新的有希望的候选物。

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