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通过氢/氘交换和质谱分析对嗜热栖热放线菌HET-s朊病毒蛋白淀粉样聚集过程中发生的构象转变进行分析。

Conformational transition occurring upon amyloid aggregation of the HET-s prion protein of Podospora anserina analyzed by hydrogen/deuterium exchange and mass spectrometry.

作者信息

Nazabal Alexis, Dos Reis Suzana, Bonneu Marc, Saupe Sven J, Schmitter Jean-Marie

机构信息

CNRS FRE 2247 Institut Européen de Chimie et Biologie, 16, Avenue Pey Berland 33607 Pessac, France.

出版信息

Biochemistry. 2003 Jul 29;42(29):8852-61. doi: 10.1021/bi0344275.

Abstract

The [Het-s] infectious element of the filamentous fungus Podospora anserina corresponds to the prion form of the HET-s protein. HET-s (289 amino acids in length) aggregates into amyloid fibers in vitro. Such fibers obtained in vitro are infectious, indicating that the [Het-s] prion can propagate as a self-perpetuating amyloid aggregate of the HET-s protein. Previous analyses have suggested that only a limited region of the HET-s protein is involved in amyloid formation and prion propagation. To document the conformational transition occurring upon amyloid aggregation of HET-s, we have developed a method involving hydrogen/deuterium exchange monitored by MALDI-MS. In a first step, a peptide mass fingerprint of the protein was obtained, leading to 87% coverage of the HET-s primary structure. Amyloid aggregates of HET-s were obtained, and H/D exchange was monitored on the soluble and on the amyloid form of HET-s. This study revealed that in the soluble form of HET-s, the C-terminal region (spanning from residues 240-289) displays a high solvent accessibility. In sharp contrast, solvent accessibility is drastically reduced in that region in the amyloid form. H/D exchange rates and levels in the N-terminal part of the protein (residues 1-220) are comparable in the soluble and the aggregated state. These results indicate that amyloid aggregation of HET-s involves a conformational transition of the C-terminal part of the protein from a mainly disordered to an aggregated state in which this region is highly protected from hydrogen exchange.

摘要

丝状真菌粗糙脉孢菌的[Het-s]感染性元件对应于HET-s蛋白的朊病毒形式。HET-s(长度为289个氨基酸)在体外聚集成淀粉样纤维。体外获得的此类纤维具有感染性,这表明[Het-s]朊病毒可以作为HET-s蛋白的自我延续性淀粉样聚集体进行传播。先前的分析表明,HET-s蛋白中只有有限的区域参与淀粉样形成和朊病毒传播。为了记录HET-s淀粉样聚集过程中发生的构象转变,我们开发了一种涉及通过基质辅助激光解吸电离质谱监测氢/氘交换的方法。第一步,获得了该蛋白的肽质量指纹图谱,覆盖了HET-s一级结构的87%。获得了HET-s的淀粉样聚集体,并监测了HET-s可溶形式和淀粉样形式的氢/氘交换。这项研究表明,在HET-s的可溶形式中,C端区域(从第240至289位残基)具有较高的溶剂可及性。与之形成鲜明对比的是,在淀粉样形式中该区域的溶剂可及性大幅降低。该蛋白N端部分(第1至220位残基)的氢/氘交换速率和水平在可溶状态和聚集状态下相当。这些结果表明,HET-s的淀粉样聚集涉及该蛋白C端部分从主要无序状态到聚集状态的构象转变,在聚集状态下该区域受到高度保护,免受氢交换。

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