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Expression of Aspergillus nidulans phy Gene in Nicotiana benthamiana Produces Active Phytase with Broad Specificities

机译:Niduiana benthamiana中构巢曲霉phy基因的表达产生具有广泛特异性的活性植酸酶

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摘要

A full-length phytase gene (phy) of Aspergillus nidulans was amplified from the cDNA library by polymerase chain reaction (PCR), and it was introduced into a bacterial expression vector, pET-28a. The recombinant protein (rPhy-E, 56 kDa) was overexpressed in the insoluble fraction of Escherichia coli culture, purified by Ni-NTA resin under denaturing conditions and injected into rats as an immunogen. To express A. nidulans phytase in a plant, the full-length of phy was cloned into a plant expression binary vector, pPZP212. The resultant construct was tested for its transient expression by Agrobacterium-infiltration into Nicotiana benthamiana leaves. Compared with a control, the agro-infiltrated leaf tissues showed the presence of phy mRNA and its high expression level in N. benthamiana. The recombinant phytase (rPhy-P, 62 kDa) was strongly reacted with the polyclonal antibody against the nonglycosylated rPhy-E. The rPhy-P showed glycosylation, two pH optima (pH 4.5 and pH 5.5), an optimum temperature at 45~55 °C, thermostability and broad substrate specificities. After deglycosylation by peptide-N-glycosidase F (PNGase-F), the rPhy-P significantly lost the phytase activity and retained 1/9 of the original activity after 10 min of incubation at 45 °C. Therefore, the deglycosylation caused a significant reduction in enzyme thermostability. In animal experiments, oral administration of the rPhy-P at 1500 U/kg body weight/day for seven days caused a significant reduction of phosphorus excretion by 16% in rat feces. Besides, the rPhy-P did not result in any toxicological changes and clinical signs.
机译:通过聚合酶链反应(PCR)从cDNA文库中扩增构巢曲霉的全长植酸酶基因(phy),并将其引入细菌表达载体pET-28a。重组蛋白(rPhy-E,56 kDa)在大肠杆菌培养物中的不溶级分中过表达,在变性条件下用Ni-NTA树脂纯化,并作为免疫原注射到大鼠中。为了在植物中表达构巢曲霉植酸酶,将全长的phy克隆到植物表达二元载体pPZP212中。通过农杆菌浸入本氏烟草叶中测试所得构建体的瞬时表达。与对照相比,农杆菌浸润的叶组织在本氏烟草中显示了phy mRNA的存在及其高表达水平。重组植酸酶(rPhy-P,62 kDa)与抗非糖基化rPhy-E的多克隆抗体强烈反应。 rPhy-P显示糖基化,两个最适pH(pH 4.5和pH 5.5),最适温度为45〜55°C,热稳定性和广泛的底物特异性。在肽-N-糖苷酶F(PNGase-F)进行去糖基化后,rPhy-P在45°C孵育10分钟后,显着丧失了肌醇六磷酸酶的活性,并保留了原始活性的1/9。因此,去糖基化显着降低了酶的热稳定性。在动物实验中,以1500 U / kg体重/天的剂量口服rPhy-P持续7天可导致大鼠粪便中磷的排泄显着减少16%。此外,rPhy-P并未引起任何毒理学变化和临床症状。

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