首页> 外文期刊>Peptides: An International Journal >Expression of an optimized Argopecten purpuratus antimicrobial peptide in E. coli and evaluation of the purified recombinant protein by in vitro challenges against important plant fungi.
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Expression of an optimized Argopecten purpuratus antimicrobial peptide in E. coli and evaluation of the purified recombinant protein by in vitro challenges against important plant fungi.

机译:优化的Argopecten purpuratus抗菌肽在大肠杆菌中的表达以及通过对重要植物真菌的体外攻击来评估纯化的重组蛋白。

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Antimicrobial peptides (AMP) have been widely described in several organisms from different kingdoms. We recently designed and evaluated a synthetic version of an AMP isolated and characterized from Argopecten purpuratus hemocytes. This study describes the generation of a chimaeric gene encoding for Ap-S, the use of this construct to transform E. coli strain BL21, and the evaluation of the purified recombinant Ap-S (rApS) as an antifungal agent. The proposed gene coding for rAp-S consists of 93 nucleotides arranged downstream from the IPTG-inducible T7 promoter. The best synthesis conditions were obtained after E. coli cultivation at 26 degrees C for 3h, which allowed for the production of an rAp-S-enriched fraction containing the peptide at 249muM. Mass spectrometry analysis of the purified rAp-S (3085.80Da) showed the addition of a glycine residue on its N-terminal end derived from vector design and peptide purification. The purified rApS fraction was assayed for antifungal activity by direct addition of purified rApS elution to potato dextrose agar media at a final concentration of 81nM. These assays showed important growth inhibitions of both biotrophic (Fusarium oxysporum, Trichoderma harzianum) and necrotrophic (Botrytis cinerea, Alternaria spp.) fungi in that the hyphae structures and spore count were affected in all cases. The strategy of cloning and expressing rAp-S in E. coli, the high yield obtained and its successful use for controlling pathogenic fungi suggest that this molecule could be applied to agricultural crops using various management strategies.
机译:抗菌肽(AMP)已在来自不同王国的几种生物中得到广泛描述。我们最近设计和评估了从Argopecten purpuratus血细胞分离和表征的AMP的合成版本。该研究描述了编码Ap-S的嵌合基因的产生,该构建体用于转化大肠杆菌BL21菌株的用途,以及对纯化的重组Ap-S(rApS)作为抗真菌剂的评估。拟议的编码rAp-S的基因由93个核苷酸组成,排列在IPTG诱导型T7启动子的下游。在大肠杆菌中于26摄氏度培养3小时后,可获得最佳合成条件,从而可生产出富含rAp-S的含有249μM肽的级分。纯化的rAp-S(3085.80Da)的质谱分析表明,其N末端添加了甘氨酸残基,该残基源自载体设计和肽纯化。通过将纯化的rApS洗脱液直接添加到马铃薯葡萄糖琼脂培养基中,最终浓度为81nM,来分析纯化的rApS馏分的抗真菌活性。这些测定显示出对生物营养菌(尖孢镰刀菌,哈茨木霉)和坏死菌(灰霉菌,链霉菌)的重要生长抑制,因为在所有情况下菌丝结构和孢子数均受到影响。在大肠杆菌中克隆和表达rAp-S的策略,获得的高产量及其在控制病原真菌方面的成功应用表明,该分子可以通过各种管理策略应用于农作物。

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