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羊瘙痒病朊病毒:一种传染性片段的三维模型。

Scrapie prions: a three-dimensional model of an infectious fragment.

作者信息

Huang Z, Prusiner S B, Cohen F E

机构信息

Department of Pharmaceutical Chemistry, University of California, San Francisco 94143, USA.

出版信息

Fold Des. 1996;1(1):13-9. doi: 10.1016/S1359-0278(96)00007-7.

Abstract

BACKGROUND

A conformational change seems to represent the major difference between the scrapie prion protein (PrPSc) and its normal cellular isoform (PrPC). We recently proposed a set of four helix bundle models for the three-dimensional structure of PrPC that are consistent with a variety of spectroscopic and genetic data.

RESULTS

We report a plausible model for the three-dimensional structure of a biologically important fragment of PrPSc. The model of residues 108-218 was constructed by an approach that combines computational techniques and experimental data. The proposed structures of this fragment of PrPSc display a four-stranded beta-sheet covered on one face by two alpha-helices. Residues implicated in the prion species barrier are found to cluster on the solvent-accessible surface of the beta-sheet of one of the models. This interface could provide a structural template that would assist the conversion of PrPC to PrPSc and hence direct prion propagation.

CONCLUSIONS

Molecular models of the PrP isoforms should prove very useful in developing structural hypotheses about the process by which PrPC is transformed into PrPSc, the mechanisms by which PrP gene mutations give rise to the inherited human prion diseases, and the species barrier that seems to protect humans from animal prions. It seems likely that PrPC represents a kinetically trapped intermediate in PrP folding.

摘要

背景

构象变化似乎是瘙痒病朊病毒蛋白(PrPSc)与其正常细胞异构体(PrPC)之间的主要差异。我们最近提出了一组关于PrPC三维结构的四螺旋束模型,这些模型与各种光谱和遗传数据一致。

结果

我们报告了一个关于PrPSc生物学重要片段三维结构的合理模型。通过结合计算技术和实验数据的方法构建了108 - 218位残基的模型。所提出的PrPSc该片段结构显示出一个四链β折叠,其一面被两个α螺旋覆盖。发现与朊病毒种属屏障相关的残基聚集在其中一个模型β折叠的溶剂可及表面上。这个界面可以提供一个结构模板,有助于PrPC向PrPSc的转化,从而指导朊病毒的传播。

结论

PrP异构体的分子模型在提出关于PrPC转化为PrPSc的过程、PrP基因突变导致遗传性人类朊病毒疾病的机制以及似乎保护人类免受动物朊病毒感染的种属屏障的结构假设方面应该非常有用。PrPC似乎代表了PrP折叠过程中的一个动力学捕获中间体。

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