Niknejad Azadeh, Webster Diane, Bhave Mrinal
Faculty of Science, Engineering and Technology, Swinburne University of Technology, Melbourne, Victoria, Australia.
School of Biological Sciences, Monash University, Melbourne, Victoria, Australia.
Protein Expr Purif. 2016 Sep;125:43-52. doi: 10.1016/j.pep.2015.09.009. Epub 2015 Sep 9.
The emergence of antibiotic resistant pathogenic strains of bacteria has necessitated the development of novel antimicrobial agents. The puroindoline A and B (PINA and PINB) proteins of wheat, well-known for their roles in determining the important phenotype of grain texture, are also antimicrobial, making them attractive as natural bio-control agents. However, the biochemical basis of PIN functionality remains unclear due to limitations in expressing them at the required yield and purity and lack of accurate tertiary structure. This study focussed on rapid transient expression of PINs targeted to different subcellular compartments (chloroplast, apoplast, endoplasmic reticulum and cytosol) of Nicotiana benthamiana leaf cells using the deconstructed tobacco mosaic virus-based 'magnICON®' system. The expressed recombinant PINs were characterised by Western blot using the Durotest anti-friabilin antibody, enzyme-linked immunosorbent assays (ELISA) and antimicrobial activity tests. Maximum yield of the His-tagged PINs occurred when targeted to the chloroplast. Both PINs exhibited oligomeric and monomeric forms on gels, but Western blots with the widely used Durotest anti-friabilin antibody identified only oligomeric forms. Only the PINs purified by a hydrophobic interaction method exhibited monomeric forms with the anti-His tag antibody, indicating correct folding. Interestingly, the Durotest antibody did not bind to monomers, suggesting their epitope may be obscured. PINs purified by His-tag affinity purification under native conditions or by the hydrophobic method exhibited antimicrobial activities. The successful in planta expression and optimisation of purification will enable future studies to examine the detailed structure of the PINs and explore novel bio-control applications in health, food and/or agriculture.
抗生素耐药性病原菌的出现使得开发新型抗菌剂成为必要。小麦的麦醇溶蛋白A和B(PINA和PINB)蛋白以其在决定谷物质地这一重要表型中的作用而闻名,它们也具有抗菌性,这使其作为天然生物防治剂具有吸引力。然而,由于在以所需产量和纯度表达它们方面存在局限性以及缺乏准确的三级结构,PIN功能的生化基础仍不清楚。本研究聚焦于使用基于解构烟草花叶病毒的“magnICON®”系统在本氏烟草叶细胞的不同亚细胞区室(叶绿体、质外体、内质网和细胞质)中快速瞬时表达PIN。通过使用Durotest抗易碎蛋白抗体的蛋白质免疫印迹、酶联免疫吸附测定(ELISA)和抗菌活性测试对表达的重组PIN进行表征。当靶向叶绿体时,His标签PIN的产量最高。两种PIN在凝胶上均呈现寡聚体和单体形式,但使用广泛使用的Durotest抗易碎蛋白抗体进行的蛋白质免疫印迹仅鉴定出寡聚体形式。只有通过疏水相互作用方法纯化的PIN与抗His标签抗体呈现单体形式,表明其折叠正确。有趣的是,Durotest抗体不与单体结合,表明其表位可能被掩盖。通过His标签亲和纯化在天然条件下或通过疏水方法纯化的PIN具有抗菌活性。在植物中成功表达和优化纯化将使未来的研究能够研究PIN的详细结构,并探索在健康、食品和/或农业中的新型生物防治应用。