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Dynamics of the peptidoglycan biosynthetic machinery in the stalked budding bacterium Hyphomonas neptunium

机译:茎芽细菌海豚中的肽聚糖生物合成机制的动力学。

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摘要

Most commonly studied bacteria grow symmetrically and divide by binary fission, generating two siblings of equal morphology. An exception to this rule are budding bacteria, in which new offspring emerges de novo from a morphologically invariant mother cell. Although this mode of proliferation is widespread in diverse bacterial lineages, the underlying mechanisms are still incompletely understood. Here, we perform the first molecular-level analysis of growth and morphogenesis in the stalked budding alphaproteobacterium Hyphomonas neptunium. Peptidoglycan labeling shows that, in this species, buds originate from a stalk-like extension of the mother cell whose terminal segment is gradually remodeled into a new cell compartment. As a first step toward identifying the machinery mediating the budding process, we performed comprehensive mutational and localization studies of predicted peptidoglycan biosynthetic proteins in H. neptunium. These analyses identify factors that localize to distinct zones of dispersed and zonal growth, and they suggest a critical role of the MreB-controlled elongasome in cell morphogenesis. Collectively, our work shows that the mechanism of growth in H. neptunium is distinct from that in related, polarly growing members of the order Rhizobiales, setting the stage for in-depth analyses of the molecular principles regulating the fascinating developmental cycle of this species.
机译:最常研究的细菌对称生长并通过二元裂变分裂,从而产生形态相同的两个同胞。该规则的一个例外是发芽细菌,其中新的后代从形态不变的母细胞从头出现。尽管这种增殖方式广泛存在于各种细菌谱系中,但其潜在机制仍不完全清楚。在这里,我们进行了茎秆出芽的α变形杆菌Hyphomonas neptunium中生长和形态发生的第一分子水平分析。肽聚糖标记显示,在该物种中,芽起源于母细胞的茎状延伸,其末端片段逐渐重塑为新的细胞区室。作为确定介导萌芽过程的机制的第一步,我们对predicted中的预测肽聚糖生物合成蛋白进行了全面的突变和定位研究。这些分析确定了位于分散和区域生长的不同区域的因素,并且它们表明了MreB控制的延伸体在细胞形态发生中的关键作用。总的来说,我们的工作表明,H虫的生长机制与根瘤菌相关的极性生长成员不同,这为深入分析调节该物种迷人的发育周期的分子原理奠定了基础。

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