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对由三维结构域交换介导的核糖核酸酶A聚集过程的阐明:一种计算方法揭示了可能的新多聚体结构。

Elucidation of the ribonuclease A aggregation process mediated by 3D domain swapping: a computational approach reveals possible new multimeric structures.

作者信息

Cozza Giorgio, Moro Stefano, Gotte Giovanni

机构信息

Department of Pharmaceutical Sciences, University of Padova, Padova, Italy.

出版信息

Biopolymers. 2008 Jan;89(1):26-39. doi: 10.1002/bip.20833.

Abstract

By lyophilization from 40% acetic acid solutions, bovine pancreatic ribonuclease A forms several three-dimensional (3D) domain-swapped oligomers: dimers, trimers, tetramers, pentamers, hexamers, and traces of high-order oligomers, purifiable by cation-exchange chromatography. Each oligomeric species consists of at least two conformers displaying different basicity density, and/or exposure of positive charges. The structures of the two dimers and one trimer have been solved. Plausible models have been proposed for a second RNase A trimer and four tetramers, but not all the models are certainly assignable to the tetramers purified. Further studies have also been made on the pentameric and hexameric species, again without reaching structurally clear-cut results. This work is focused on the detailed modeling of the tetrameric RNase A species, using four different approaches to possibly clarify unknown structural aspects. The results obtained do not confirm the validity of one tetrameric model previously proposed, but allow the proposal of a novel tetrameric structure displaying new interfaces that are absent in the other known conformers. New details concerning other tetrameric structures are also described. RNase A multimers larger than tetramers, i.e., pentamers, hexamers, octamers, nonamers, up to dodecamers, are also modeled, with the proposal of novel domain-swapped structures, and the confirmation of what had previously been inferred. Finally, the propensity of RNase A to possibly form high-order supramolecular multimers is analyzed starting from the large number of domain-swapped RNase A conformers modeled.

摘要

通过从40%乙酸溶液中冻干,牛胰核糖核酸酶A形成了几种三维(3D)结构域交换寡聚体:二聚体、三聚体、四聚体、五聚体、六聚体以及痕量的高阶寡聚体,可通过阳离子交换色谱法纯化。每个寡聚体物种至少由两种具有不同碱密度和/或正电荷暴露程度的构象体组成。两种二聚体和一种三聚体的结构已得到解析。已经为第二种核糖核酸酶A三聚体和四种四聚体提出了合理的模型,但并非所有模型都能确定地对应于纯化得到的四聚体。对五聚体和六聚体物种也进行了进一步研究,同样没有得到结构上明确的结果。这项工作专注于四聚体核糖核酸酶A物种的详细建模,采用四种不同方法来可能阐明未知的结构方面。所获得的结果并未证实先前提出的一种四聚体模型的有效性,但允许提出一种新的四聚体结构,该结构展示出其他已知构象体中不存在的新界面。还描述了有关其他四聚体结构的新细节。大于四聚体的核糖核酸酶A多聚体,即五聚体、六聚体、八聚体、九聚体,直至十二聚体,也进行了建模,提出了新的结构域交换结构,并证实了先前的推断。最后,从大量建模的结构域交换核糖核酸酶A构象体出发,分析了核糖核酸酶A可能形成高阶超分子多聚体的倾向。

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