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揭示朊病毒株结构决定因素的最小传染性亚结构,通过错误折叠朊病毒蛋白组装体的自发解离来揭示。

The Smallest Infectious Substructure Encoding the Prion Strain Structural Determinant Revealed by Spontaneous Dissociation of Misfolded Prion Protein Assemblies.

机构信息

Université Paris-Saclay, INRAe, UVSQ, VIM, 78350 Jouy-en-Josas, France; ICP, CNRS, Université Paris-Saclay, 91400 Orsay, France.

Université Paris-Saclay, INRAe, UVSQ, VIM, 78350 Jouy-en-Josas, France.

出版信息

J Mol Biol. 2023 Nov 1;435(21):168280. doi: 10.1016/j.jmb.2023.168280. Epub 2023 Sep 18.

Abstract

It is commonly accepted that the prion replicative propensity and strain structural determinant (SSD) are encoded in the fold of PrP amyloid fibril assemblies. By exploring the quaternary structure dynamicity of several prion strains, we revealed that all mammalian prion assemblies exhibit the generic property of spontaneously generating two sets of discreet infectious tetrameric and dimeric species differing significantly by their specific infectivity. By using perturbation approaches such as dilution and ionic strength variation, we demonstrated that these two oligomeric species were highly dynamic and evolved differently in the presence of chaotropic agents. In general, our observations of seven different prion strains from three distinct species highlight the high dynamicity of PrP assemblies as a common and intrinsic property of mammalian prions. The existence of such small infectious PrP species harboring the SSD indicates that the prion infectivity and the SSD are not restricted only to the amyloid fold but can also be encoded in other alternative quaternary structures. Such diversity in the quaternary structure of prion assemblies tends to indicate that the structure of PrP can be divided into two independent folding domains: a domain encoding the strain structural determinant and a second domain whose fold determines the type of quaternary structure that could adopt PrP assemblies.

摘要

普遍认为,朊病毒的复制倾向和株结构决定因素(SSD)编码在 PrP 淀粉样纤维组装的折叠中。通过探索几种朊病毒株的四级结构动态性,我们揭示了所有哺乳动物朊病毒组装体都表现出自发产生两组离散的感染性四聚体和二聚体物种的通用特性,它们的特异性感染力有很大差异。通过使用稀释和离子强度变化等扰动方法,我们证明了这两种寡聚体物种具有高度的动态性,并在存在离液剂时表现出不同的进化。总的来说,我们对来自三个不同物种的七种不同朊病毒株的观察结果强调了 PrP 组装体的高动态性是哺乳动物朊病毒的共同内在特性。这种携带 SSD 的小感染性 PrP 物种的存在表明,朊病毒感染力和 SSD 不仅限于淀粉样折叠,也可以编码在其他替代的四级结构中。朊病毒组装体四级结构的这种多样性表明,PrP 的结构可以分为两个独立的折叠域:一个域编码株结构决定因素,另一个域的折叠决定了 PrP 组装体可以采用的四级结构类型。

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