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β-螺旋折叠的特定残基对HET-s朊病毒功能、淀粉样结构和稳定性的贡献。

Contribution of specific residues of the β-solenoid fold to HET-s prion function, amyloid structure and stability.

作者信息

Daskalov Asen, Gantner Matthias, Wälti Marielle Aulikki, Schmidlin Thierry, Chi Celestine N, Wasmer Christian, Schütz Anne, Ceschin Johanna, Clavé Corinne, Cescau Sandra, Meier Beat, Riek Roland, Saupe Sven J

机构信息

Institut de Biochimie et de Génétique Cellulaire, Unité Mixte de Recherche 5095, Centre National de la Recherche Scientifique Université de Bordeaux, Bordeaux, France.

Laboratory of Physical Chemistry, Eidgenössische Technische Hochschule (ETH) Zürich, Zürich, Switzerland.

出版信息

PLoS Pathog. 2014 Jun 12;10(6):e1004158. doi: 10.1371/journal.ppat.1004158. eCollection 2014 Jun.

Abstract

The [Het-s] prion of the fungus Podospora anserina represents a good model system for studying the structure-function relationship in amyloid proteins because a high resolution solid-state NMR structure of the amyloid prion form of the HET-s prion forming domain (PFD) is available. The HET-s PFD adopts a specific β-solenoid fold with two rungs of β-strands delimiting a triangular hydrophobic core. A C-terminal loop folds back onto the rigid core region and forms a more dynamic semi-hydrophobic pocket extending the hydrophobic core. Herein, an alanine scanning mutagenesis of the HET-s PFD was conducted. Different structural elements identified in the prion fold such as the triangular hydrophobic core, the salt bridges, the asparagines ladders and the C-terminal loop were altered and the effect of these mutations on prion function, fibril structure and stability was assayed. Prion activity and structure were found to be very robust; only a few key mutations were able to corrupt structure and function. While some mutations strongly destabilize the fold, many substitutions in fact increase stability of the fold. This increase in structural stability did not influence prion formation propensity in vivo. However, if an Ala replacement did alter the structure of the core or did influence the shape of the denaturation curve, the corresponding variant showed a decreased prion efficacy. It is also the finding that in addition to the structural elements of the rigid core region, the aromatic residues in the C-terminal semi-hydrophobic pocket are critical for prion propagation. Mutations in the latter region either positively or negatively affected prion formation. We thus identify a region that modulates prion formation although it is not part of the rigid cross-β core, an observation that might be relevant to other amyloid models.

摘要

粪生粪壳菌(Podospora anserina)的[Het-s]朊病毒是研究淀粉样蛋白结构-功能关系的良好模型系统,因为已获得HET-s朊病毒形成结构域(PFD)的淀粉样朊病毒形式的高分辨率固态核磁共振结构。HET-s PFD采用特定的β-螺线管折叠结构,有两排β-链界定一个三角形疏水核心。一个C端环回折到刚性核心区域上,形成一个更具动态性的半疏水口袋,扩展了疏水核心。在此,对HET-s PFD进行了丙氨酸扫描诱变。对在朊病毒折叠中鉴定出的不同结构元件,如三角形疏水核心、盐桥、天冬酰胺梯和C端环进行了改变,并测定了这些突变对朊病毒功能、纤维结构和稳定性的影响。发现朊病毒活性和结构非常稳定;只有少数关键突变能够破坏结构和功能。虽然一些突变会强烈破坏折叠结构的稳定性,但许多取代实际上增加了折叠结构的稳定性。这种结构稳定性的增加在体内并未影响朊病毒形成倾向。然而,如果丙氨酸替代确实改变了核心结构或影响了变性曲线的形状,相应的变体则显示出朊病毒活性降低。还发现,除了刚性核心区域的结构元件外,C端半疏水口袋中的芳香族残基对朊病毒传播至关重要。该区域的突变对朊病毒形成有正向或负向影响。因此,我们确定了一个调节朊病毒形成的区域,尽管它不是刚性交叉β核心的一部分,这一观察结果可能与其他淀粉样模型相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4528/4055769/a7044bc36f6b/ppat.1004158.g001.jpg

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