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首页> 外文期刊>Microbial Cell Factories >Soluble polymorphic bank vole prion proteins induced by co-expression of quiescin sulfhydryl oxidase in E. coli and their aggregation behaviors
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Soluble polymorphic bank vole prion proteins induced by co-expression of quiescin sulfhydryl oxidase in E. coli and their aggregation behaviors

机译:大肠杆菌中槲皮素巯基氧化酶共表达诱导的可溶性多态银行伏地e蛋白及其聚集行为

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Background The infectious prion protein (PrPSc or prion) is derived from its cellular form (PrPC) through a conformational transition in animal and human prion diseases. Studies have shown that the interspecies conversion of PrPC to PrPSc is largely swayed by species barriers, which is mainly deciphered by the sequence and conformation of the proteins among species. However, the bank vole PrPC (BVPrP) is highly susceptible to PrPSc from different species. Transgenic mice expressing BVPrP with the polymorphic isoleucine (109I) but methionine (109M) at residue 109 spontaneously develop prion disease. Results To explore the mechanism underlying the unique susceptibility and convertibility, we generated soluble BVPrP by co-expression of BVPrP with Quiescin sulfhydryl oxidase (QSOX) in Escherichia coli . Interestingly, rBVPrP-109M and rBVPrP-109I exhibited distinct seeded aggregation pathways and aggregate morphologies upon seeding of mouse recombinant PrP fibrils, as monitored by thioflavin T fluorescence and electron microscopy. Moreover, they displayed different aggregation behaviors induced by seeding of hamster and mouse prion strains under real-time quaking-induced conversion. Conclusions Our results suggest that QSOX facilitates the formation of soluble prion protein and provide further evidence that the polymorphism at residue 109 of QSOX-induced BVPrP may be a determinant in mediating its distinct convertibility and susceptibility.
机译:背景传染性病毒蛋白(PrP Sc 或病毒)是通过其在动物和人类病毒疾病中的构象转变而从其细胞形式(PrP C )衍生而来的。研究表明,PrP C 到PrP Sc 的种间转换在很大程度上受到物种障碍的影响,而障碍主要由物种间蛋白质的序列和构象所破译。然而,岸田鼠PrP C (BVPrP)对不同物种的PrP Sc 高度敏感。表达具有多态异亮氨酸(109I)但残基109处的蛋氨酸(109M)的BVPrP的转基因小鼠自发地发展病毒病。结果为了探索独特的敏感性和可转换性的机制,我们通过在大肠杆菌中共表达BVPrP与Quiescin巯基氧化酶(QSOX)生成了可溶性BVPrP。有趣的是,rBVPrP-109M和rBVPrP-109I在接种小鼠重组PrP原纤维后表现出不同的种子聚集途径和聚集形态,如通过硫代黄素T荧光和电子显微镜观察的。此外,他们表现出不同的聚集行为,由在实时地震诱导的转化下的仓鼠和小鼠病毒株的接种引起。结论我们的结果表明,QSOX促进了可溶性ion病毒蛋白的形成,并提供了进一步的证据,表明QSOX诱导的BVPrP残基109的多态性可能是介导其独特的可转化性和敏感性的决定因素。

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