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Study of the Interactions of Fusarium virguliforme Toxin FvTox1 with Synthetic Peptides by Molecular Simulations and a Label-Free Biosensor

机译:通过分子模拟和无标记生物传感器研究镰刀镰刀菌毒素FvTox1与合成肽的相互作用

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摘要

Fusarium virguliforme is a soil borne pathogen that causes sudden death syndrome (SDS) in soybean plants. This pathogenic disease may result in severe soybean yield suppression and can cause serious economic harm. It has been shown that the FvTox1 toxin produced by the pathogen may be the root cause of foliar SDS. Anti-FvTox1 -single-chain variable fragment antibody expressed in transgenic soybean plants was shown to neutralise the FvTox1 toxin involved in foliar SDS development. Here, we have investigated the binding affinities of FvTox1 with four FvTox1-interacting peptides of 7 to 12 amino acids identified from phage display libraries using both bioinformatics-based molecular simulations and label-free bioassays with a unique photonic crystal biosensor. Results from the molecular simulations have predicted the interaction energies and 3-dimensional (3D) structures of FvTox1 and FvTox1-interacting peptide complexes. Our label-free binding assays have further provided the interaction strength of FvTox1 with four different FvTox1-interacting peptides and experimentally confirmed the simulation results obtained from bioinformatics-based molecular calculations.
机译:镰刀镰刀菌是土壤传播的病原体,可导致大豆植物猝死综合症(SDS)。这种病原性疾病可能会严重抑制大豆产量,并可能造成严重的经济损失。已经显示病原体产生的FvTox1毒素可能是叶面SDS的根本原因。已显示在转基因大豆植物中表达的抗FvTox1单链可变片段抗体可中和参与叶片SDS发育的FvTox1毒素。在这里,我们使用基于生物信息学的分子模拟和具有独特光子晶体生物传感器的无标记生物测定方法,研究了FvTox1与4个FvTox1相互作用肽的7至12个氨基酸的结合亲和力,这些肽是从噬菌体展示库中鉴定的。分子模拟的结果预测了FvTox1和FvTox1相互作用肽复合物的相互作用能和3维(3D)结构。我们的无标记结合测定进一步提供了FvTox1与四种不同的FvTox1相互作用肽的相互作用强度,并通过实验证实了基于生物信息学的分子计算获得的模拟结果。

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