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在突变朊病毒蛋白异位表达时朊病毒蛋白缺陷细胞系的羊瘙痒病感染

Scrapie infection of prion protein-deficient cell line upon ectopic expression of mutant prion proteins.

作者信息

Maas Elke, Geissen Markus, Groschup Martin H, Rost Romina, Onodera Takashi, Schätzl Hermann, Vorberg Ina M

机构信息

Institute of Virology, Technical University of Munich, Troger Strasse 30, 81675 Munich, Germany.

出版信息

J Biol Chem. 2007 Jun 29;282(26):18702-10. doi: 10.1074/jbc.M701309200. Epub 2007 Apr 27.

DOI:10.1074/jbc.M701309200
PMID:17468101
Abstract

Expression of the cellular prion protein (PrP(C)) is crucial for susceptibility to prions. In vivo, ectopic expression of PrP(C) restores susceptibility to prions and transgenic mice that express heterologous PrP on a PrP knock-out background have been used extensively to study the role of PrP alterations for prion transmission and species barriers. Here we report that prion protein knock-out cells can be rendered permissive to scrapie infection by the ectopic expression of PrP. The system was used to study the influence of sheep PrP-specific residues in mouse PrP on the infection process with mouse adapted scrapie. These studies reveal several critical residues previously not associated with species barriers and demonstrate that amino acid residue alterations at positions known to have an impact on the susceptibility of sheep to sheep scrapie also drastically influence PrP(Sc) formation by mouse-adapted scrapie strain 22L. Furthermore, our data suggest that amino acid polymorphisms located on the outer surfaces of helix 2 and 3 drastically impact conversion efficiency. In conclusion, this system allows for the fast generation of mutant PrP(Sc) that is entirely composed of transgenic PrP and is, thus, ideally suited for testing if artificial PrP molecules can affect prion replication. Transmission of infectivity generated in HpL3-4 cells expressing altered PrP molecules to mice could also help to unravel the potential influence of mutant PrP(Sc) on host cell tropism and strain characteristics in vivo.

摘要

细胞朊病毒蛋白(PrP(C))的表达对于朊病毒易感性至关重要。在体内,PrP(C)的异位表达可恢复对朊病毒的易感性,并且在PrP基因敲除背景下表达异源PrP的转基因小鼠已被广泛用于研究PrP改变对朊病毒传播和种间屏障的作用。在此,我们报告朊病毒蛋白基因敲除细胞可通过PrP的异位表达而变得允许羊瘙痒病感染。该系统用于研究小鼠PrP中绵羊PrP特异性残基对适应小鼠的羊瘙痒病感染过程的影响。这些研究揭示了几个以前与种间屏障无关的关键残基,并证明已知对绵羊对绵羊瘙痒病易感性有影响的位置的氨基酸残基改变也会极大地影响适应小鼠的羊瘙痒病毒株22L的PrP(Sc)形成。此外,我们的数据表明位于螺旋2和3外表面的氨基酸多态性对转化效率有极大影响。总之,该系统允许快速生成完全由转基因PrP组成的突变型PrP(Sc),因此非常适合测试人工PrP分子是否能影响朊病毒复制。将表达改变的PrP分子的HpL3-4细胞中产生的感染性传播给小鼠也有助于揭示突变型PrP(Sc)对体内宿主细胞嗜性和毒株特征的潜在影响。

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