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A ring-shaped conduit connects the mother cell and forespore during sporulation in Bacillus subtilis

机译:环形导管在枯草芽孢杆菌的孢子形成过程中连接母细胞和孢子

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摘要

During spore formation in Bacillus subtilis a transenvelope complex is assembled across the double membrane that separates the mother cell and forespore. This complex (called the “A–Q complex”) is required to maintain forespore development and is composed of proteins with remote homology to components of type II, III, and IV secretion systems found in Gram-negative bacteria. Here, we show that one of these proteins, SpoIIIAG, which has remote homology to ring-forming proteins found in type III secretion systems, assembles into an oligomeric ring in the periplasmic-like space between the two membranes. Three-dimensional reconstruction of images generated by cryo-electron microscopy indicates that the SpoIIIAG ring has a cup-and-saucer architecture with a 6-nm central pore. Structural modeling of SpoIIIAG generated a 24-member ring with dimensions similar to those of the EM-derived saucer. Point mutations in the predicted oligomeric interface disrupted ring formation in vitro and impaired forespore gene expression and efficient spore formation in vivo. Taken together, our data provide strong support for the model in which the A–Q transenvelope complex contains a conduit that connects the mother cell and forespore. We propose that a set of stacked rings spans the intermembrane space, as has been found for type III secretion systems.
机译:在枯草芽孢杆菌的孢子形成过程中,跨信封复合物跨过将母细胞和前孢子分开的双膜。该复合物(称为“ A-Q复合物”)是维持孢子发育所必需的,它由与革兰氏阴性细菌中II,III和IV型分泌系统的成分具有远距离同源性的蛋白质组成。在这里,我们显示了这些蛋白质之一SpoIIIAG与在III型分泌系统中发现的成环蛋白质具有远距离同源性,在两个膜之间的周质样空间中组装成寡聚环。冷冻电子显微镜产生的图像的三维重建表明,SpoIIIAG环具有杯碟结构,中心孔为6 nm。 SpoIIIAG的结构模型生成了一个24成员环,其尺寸与EM衍生的碟子的尺寸相似。预测的寡聚体界面中的点突变在体外破坏了环的形成,并损害了前孢子基因的表达和体内有效的孢子形成。综上所述,我们的数据为A–Q跨络复合体包含连接母细胞和前孢子的导管的模型提供了有力的支持。我们建议,如III型分泌系统所发现的,一组堆叠的环跨膜空间。

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