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Diverse supramolecular structures formed by self-assembling proteins of the Bacillus subtilis spore coat

机译:由枯草芽孢杆菌孢子衣壳的自组装蛋白形成的多种超分子结构

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Bacterial spores (endospores), such as those of the pathogens Clostridium difficile and Bacillus anthracis, are uniquely stable cell forms, highly resistant to harsh environmental insults. Bacillus subtilis is the best studied spore-former and we have used it to address the question of how the spore coat is assembled from multiple components to form a robust, protective superstructure. B.subtilis coat proteins (CotY, CotE, CotV and CotW) expressed in Escherichia coli can arrange intracellularly into highly stable macro-structures through processes of self-assembly. Using electron microscopy, we demonstrate the capacity of these proteins to generate ordered one-dimensional fibres, two-dimensional sheets and three-dimensional stacks. In one case (CotY), the high degree of order favours strong, cooperative intracellular disulfide cross-linking. Assemblies of this kind could form exquisitely adapted building blocks for higher-order assembly across all spore-formers. These physically robust arrayed units could also have novel applications in nano-biotechnology processes.
机译:细菌孢子(内生孢子),例如病原体艰难梭菌和炭疽芽孢杆菌,是独特的稳定细胞形式,对恶劣的环境损害具有高度抵抗力。枯草芽孢杆菌是研究最深入的孢子形成剂,我们已用它来解决孢子外皮如何由多种组分组装形成坚固的保护性上层结构的问题。在大肠杆菌中表达的枯草芽孢杆菌外壳蛋白(CotY,CotE,CotV和CotW)可以通过自组装过程在细胞内排列成高度稳定的宏观结构。使用电子显微镜,我们证明了这些蛋白质产生有序的一维纤维,二维薄片和三维堆栈的能力。在一种情况下(CotY),高度有序性有利于牢固的协作性细胞内二硫键交联。这种组件可以形成精巧的构建基块,以便在所有孢子形成者之间进行更高级别的组装。这些物理坚固的阵列单元还可以在纳米生物技术过程中具有新颖的应用。

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