Multiple affinity purification of a baculovirus-derived recombinant prion protein with in vitro ability to convert to its pathogenic form

M. Imamura, N. Kato, Y. Iwamaru, S. Mohri, T. Yokoyama, Y. Murayama
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引用次数: 5

Abstract

ABSTRACT We previously showed that baculovirus-derived recombinant prion protein (Bac-PrP) can be converted to the misfolded infectious form (PrPSc) by protein misfolding cyclic amplification, an in vitro conversion technique. Bac-PrP, with post-translational modifications, would be useful for various applications such as using PrP as an immunogen for generating anti-PrP antibody, developing anti-prion drugs or diagnostic assays using in vitro conversion systems, and establishing an in vitro prion propagation model. For this purpose, highly purified Bac-PrP with in vitro conversion activity is necessary for use as a PrPC source, to minimize contamination. Furthermore, an exogenous affinity tag-free form is desirable to avoid potential steric interference by the affinity tags during the conversion process. In this study, we established purification methods for the untagged Bac-PrP under native conditions by combining exogenous double-affinity tags, namely, a polyhistidine-tag and a profinity eXact tag, with an octarepeat sequence of the N-terminal region of PrP, which has metal ion-binding affinity. The untagged Bac-PrP with near-homogeneity was obtained by three-step affinity purification, and it was shown that the final, purified Bac-PrP could convert to its pathogenic form. The presented purification procedure could be applied not only to PrP but also to other eukaryotic, recombinant proteins that require high purity and intact physiological activity.
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杆状病毒衍生的重组朊病毒蛋白的多重亲和纯化,具有体外转化为致病性形式的能力
我们之前已经证明,杆状病毒衍生的重组朊病毒蛋白(Bac-PrP)可以通过蛋白质错误折叠循环扩增(一种体外转化技术)转化为错误折叠的感染形式(PrPSc)。经过翻译后修饰的Bac-PrP可用于多种应用,如利用PrP作为产生抗PrP抗体的免疫原,利用体外转化系统开发抗朊病毒药物或诊断分析,以及建立体外朊病毒繁殖模型。为此,必须使用具有体外转化活性的高纯度Bac-PrP作为PrPC源,以尽量减少污染。此外,需要一种外源的无亲和标签形式,以避免在转换过程中亲和标签的潜在空间干扰。在本研究中,我们将外源双亲和标签(即多组氨酸标签和亲和eXact标签)与具有金属离子结合亲和性的PrP n端区域的八重序列相结合,建立了在天然条件下纯化未标记Bac-PrP的方法。通过三步亲和纯化获得了接近同源性的未标记Bac-PrP,结果表明纯化的最终Bac-PrP可以转化为致病性形式。该纯化方法不仅适用于PrP,也适用于其他要求高纯度和完整生理活性的真核重组蛋白。
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