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由非天然中间体形成纤维聚集体:分离出的P22尾刺β-螺旋结构域

Formation of fibrous aggregates from a non-native intermediate: the isolated P22 tailspike beta-helix domain.

作者信息

Schuler B, Rachel R, Seckler R

机构信息

Institut für Biophysik und Physikalische Biochemie, Genetik und Mikrobiologie, Universität Regensburg, 93040 Regensburg, Germany.

出版信息

J Biol Chem. 1999 Jun 25;274(26):18589-96. doi: 10.1074/jbc.274.26.18589.

Abstract

In the assembly pathway of the trimeric P22 tailspike protein, the protein conformation critical for the partitioning between productive folding and off-pathway aggregation is a monomeric folding intermediate. The central domain of tailspike, a large right-handed parallel beta-helix, is essentially structured in this species. We used the isolated beta-helix domain (Bhx), expressed with a hexahistidine tag, to investigate the mechanism of aggregation without the two terminal domains present in the complete protein. Although Bhx has been shown to fold reversibly at low ionic strength conditions, increased ionic strength induced aggregation with a maximum at urea concentrations corresponding to the midpoint of urea-induced folding transitions. According to size exclusion chromatography, aggregation appeared to proceed via a linear polymerization mechanism. Circular dichroism indicated a secondary structure content of the aggregates similar to that of the native state, but at the same time their tryptophan fluorescence was largely quenched. Microscopic analysis of the aggregates revealed a variety of morphologies; among others, fibrils with fine structure were observed that exhibited bright green birefringence if viewed under cross-polarized light after staining with Congo red. These observations, together with the effects of folding mutations on the aggregation process, indicate the involvement of a partially structured intermediate distinct from both unfolded and native Bhx.

摘要

在三聚体P22尾刺蛋白的组装途径中,对于有效折叠和非途径聚集之间的分配至关重要的蛋白质构象是单体折叠中间体。尾刺的中央结构域是一个大型右手平行β-螺旋,在这个物种中基本已形成结构。我们使用带有六组氨酸标签表达的分离β-螺旋结构域(Bhx),来研究在完整蛋白质中不存在两个末端结构域时的聚集机制。尽管Bhx已被证明在低离子强度条件下可可逆折叠,但增加的离子强度会诱导聚集,在对应于尿素诱导折叠转变中点的尿素浓度下达到最大值。根据尺寸排阻色谱法,聚集似乎通过线性聚合机制进行。圆二色性表明聚集体的二级结构含量与天然状态相似,但同时其色氨酸荧光在很大程度上被淬灭。对聚集体的显微镜分析揭示了多种形态;其中,观察到具有精细结构的纤维,在用刚果红染色后在交叉偏振光下观察时显示出亮绿色双折射。这些观察结果,连同折叠突变对聚集过程的影响,表明存在一种不同于未折叠和天然Bhx的部分结构化中间体。

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