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对细菌蛋白毒素肺炎溶血素的单体和寡聚体形式进行建模。

Modeling the bacterial protein toxin, pneumolysin, in its monomeric and oligomeric form.

作者信息

Morgan P J, Hyman S C, Byron O, Andrew P W, Mitchell T J, Rowe A J

机构信息

Department of Microbiology and Immunology, University of Leicester, United Kingdom.

出版信息

J Biol Chem. 1994 Oct 14;269(41):25315-20.

PMID:7929224
Abstract

Pneumolysin is a member of the family of related bacterial thiol-activated toxins, which share structural similarities and a proposed common cytolytic mechanism. Currently the molecular mechanism of membrane damage caused by these toxins remains a matter of controversy. A prerequisite for defining this mechanism is a detailed knowledge of the monomeric and oligomeric pneumolysin structures. We present for the first time details of the monomeric structure of a thiol-activated toxin, pneumolysin. Electron microscope images of metal-shadowed pneumolysin monomers show an asymmetric molecule composed of four domains. We have studied the conformation of pneumolysin monomer by low resolution hydrodynamic bead modeling procedures. The bead model dimensions and shape are derived solely from the electron micrographs. The bead model has been evaluated in terms of the predicted solution properties, which in turn have been compared to the experimental values of the sedimentation coefficient, s(20,w)0, obtained by analytical ultracentrifugation and the intrinsic viscosity, [eta]. Pneumolysin oligomers, observed as ring- and arc-shaped structures, were also examined by electron microscopy. Metal shadowing and negative staining methods were used to establish the overall dimensions of the oligomer and were used to produce a morphological model for the oligomer, incorporating monomer subunits based on the hydrodynamic bead model.

摘要

肺炎溶血素是相关细菌硫醇激活毒素家族的一员,这些毒素具有结构相似性和一种推测的共同细胞溶解机制。目前,这些毒素引起膜损伤的分子机制仍存在争议。确定这一机制的一个前提是详细了解肺炎溶血素单体和寡聚体的结构。我们首次展示了硫醇激活毒素肺炎溶血素单体结构的细节。金属阴影处理的肺炎溶血素单体的电子显微镜图像显示,它是一个由四个结构域组成的不对称分子。我们通过低分辨率流体动力学珠子建模程序研究了肺炎溶血素单体的构象。珠子模型的尺寸和形状完全由电子显微照片得出。已根据预测的溶液性质对珠子模型进行了评估,这些性质又与通过分析超速离心获得的沉降系数s(20,w)0和特性粘度[η]的实验值进行了比较。通过电子显微镜也检查了观察到的呈环形和弧形结构的肺炎溶血素寡聚体。使用金属阴影处理和负染色方法确定寡聚体的整体尺寸,并用于生成寡聚体的形态模型,该模型基于流体动力学珠子模型纳入单体亚基。

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