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An early cytoplasmic step of peptidoglycan synthesis is associated to MreB in Bacillus subtilis

机译:肽聚糖合成的细胞质早期阶段与枯草芽孢杆菌中的MreB相关

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MreB proteins play a major role during morphogenesis of rod-shaped bacteria by organizing biosynthesis of the peptidoglycan cell wall. However, the mechanisms underlying this process are not well understood. In Bacillus subtilis, membrane-associated MreB polymers have been shown to be associated to elongation-specific complexes containing transmembrane morphogenetic factors and extracellular cell wall assembly proteins. We have now found that an early intracellular step of cell wall synthesis is also associated to MreB. We show that the previously uncharacterized protein YkuR (renamed DapI) is required for synthesis of meso-diaminopimelate (m-DAP), an essential constituent of the peptidoglycan precursor, and that it physically interacts with MreB. Highly inclined laminated optical sheet microscopy revealed that YkuR forms uniformly distributed foci that exhibit fast motion in the cytoplasm, and are not detected in cells lacking MreB. We propose a model in which soluble MreB organizes intracellular steps of peptidoglycan synthesis in the cytoplasm to feed the membrane-associated cell wall synthesizing machineries.
机译:MreB蛋白通过组织肽聚糖细胞壁的生物合成,在杆状细菌的形态发生过程中发挥重要作用。但是,此过程的机制尚不十分清楚。在枯草芽孢杆菌中,已证明与膜相关的MreB聚合物与含有跨膜形态发生因子和细胞外细胞壁装配蛋白的伸长特异性复合物有关。现在我们已经发现,细胞壁合成的早期细胞内步骤也与MreB有关。我们显示以前未表征的蛋白质YkuR(重命名为DapI)是合成中二氨基己二酸酯(m-DAP)(肽聚糖前体的基本组成部分)所必需的,并且它与MreB物理相互作用。高度倾斜的层压光学片显微镜显示,YkuR形成均匀分布的病灶,在细胞质中表现出快速运动,而在缺乏MreB的细胞中未检测到。我们提出了一个模型,其中可溶性MreB在细胞质中组织肽聚糖合成的细胞内步骤,以喂养与膜相关的细胞壁合成机器。

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