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Structural conservation of prion strain specificities in recombinant prion protein fibrils in real-time quaking-induced conversion

机译:实时震荡诱导的重组in病毒蛋白原纤维中病毒菌株特异性的结构保守性

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A major unsolved issue of prion biology is the existence of multiple strains with distinct phenotypes and this strain phenomenon is postulated to be associated with the conformational diversity of the abnormal prion protein (PrPSc). Real-time quaking-induced conversion (RT-QUIC) assay that uses Escherichia coli-derived recombinant prion protein (rPrP) for the sensitive detection of PrPSc results in the formation of rPrP-fibrils seeded with various strains. We demonstrated that there are differences in the secondary structures, especially in the beta-sheets, and conformational stability between 2 rPrP-fibrils seeded with either Chandler or 22L strains in the first round of RT-QUIC. In particular, the differences in conformational properties of these 2 rPrP-fibrils were common to those of the original PrPSc. However, the strain specificities of rPrP-fibrils seen in the first round were lost in subsequent rounds. Instead, our findings suggest that nonspecific fibrils became the major species, probable owing to their selective growth advantage in the RT-QUIC. This study shows that at least some strain-specific conformational properties of the original PrPSc can be transmitted to rPrP-fibrils in vitro, but further conservation appears to require unknown cofactors or environmental conditions or both.
机译:pr病毒生物学的一个主要未解决的问题是存在具有不同表型的多种菌株,并且该菌株现象被认为与异常病毒蛋白(PrPSc)的构象多样性有关。使用大肠杆菌衍生的重组pr病毒蛋白(rPrP)对PrPSc进行灵敏检测的实时地震诱导转化(RT-QUIC)分析导致形成种有各种菌株的rPrP原纤维。我们证明,在第一轮RT-QUIC中,用钱德勒或22L菌株接种的2个rPrP原纤维之间的二级结构,尤其是在β-折叠中,以及构象稳定性方面存在差异。特别地,这两个rPrP原纤维的构象性质差异与原始PrPSc相同。然而,在第一轮中发现的rPrP原纤维的菌株特异性在随后的轮中丢失。相反,我们的发现表明,非特异性原纤维成为主要物种,这可能是由于它们在RT-QUIC中的选择性生长优势所致。这项研究表明,原始PrPSc的至少某些菌株特异性构象特性可以在体外传播到rPrP原纤维,但进一步的保存似乎需要未知的辅因子或环境条件,或两者兼而有之。

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