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Cell-wall remodeling drives engulfment during Bacillus subtilis sporulation

机译:细胞壁重塑驱动枯草芽孢杆菌孢子形成过程中的吞噬

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摘要

When starved, the Gram-positive bacterium Bacillus subtilis forms durable spores for survival. Sporulation initiates with an asymmetric cell division, creating a large mother cell and a small forespore. Subsequently, the mother cell membrane engulfs the forespore in a phagocytosis-like process. However, the force generation mechanism for forward membrane movement remains unknown. Here, we show that membrane migration is driven by cell wall remodeling at the leading edge of the engulfing membrane, with peptidoglycan synthesis and degradation mediated by penicillin binding proteins in the forespore and a cell wall degradation protein complex in the mother cell. We propose a simple model for engulfment in which the junction between the septum and the lateral cell wall moves around the forespore by a mechanism resembling the ‘template model’. Hence, we establish a biophysical mechanism for the creation of a force for engulfment based on the coordination between cell wall synthesis and degradation.>DOI:
机译:饥饿时,革兰氏阳性枯草芽孢杆菌会形成持久的孢子以存活。孢子形成以不对称的细胞分裂开始,产生大的母细胞和小的前孢子囊。随后,母细胞膜以吞噬作用样过程吞噬前孢子。但是,膜向前运动的力产生机理仍然未知。在这里,我们表明膜迁移是由吞噬膜前缘的细胞壁重塑驱动的,肽聚糖的合成和降解由前孢子中的青霉素结合蛋白和母细胞中的细胞壁降解蛋白复合物介导。我们提出了一个简单的吞噬模型,其中隔膜与外侧细胞壁之间的连接处通过类似于“模板模型”的机制在前孢子周围移动。因此,我们基于细胞壁合成与降解之间的协调作用,建立了一种生物吞噬机制,以产生吞噬力。> DOI:

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