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The NtrYX Two-Component System Regulates the Bacterial Cell Envelope

机译:NTRYX双组分系统调节细菌细胞包络

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摘要

Activity of the NtrYX two-component system has been associated with important processes in diverse bacteria, ranging from symbiosis to nitrogen and energy metabolism. In the facultative alphaproteobacterium Rhodobacter sphaeroides , loss of the two-component system NtrYX results in increased lipid production and sensitivity to some known cell envelope-active compounds. In this study, we show that NtrYX directly controls multiple properties of the cell envelope. We find that the response regulator NtrX binds upstream of cell envelope genes, including those involved in peptidoglycan biosynthesis and modification and in cell division. We show that loss of NtrYX impacts the cellular levels of peptidoglycan precursors and lipopolysaccharide and alters cell envelope structure, increasing cell length and the thickness of the periplasm. Cell envelope function is also disrupted in the absence of NtrYX, resulting in increased outer membrane permeability. Based on the properties of R. sphaeroides cells lacking NtrYX and the target genes under direct control of this two-component system, we propose that NtrYX plays a previously undescribed, and potentially conserved, role in the assembly, structure, and function of the cell envelope in a variety of bacteria.
机译:NTRYX双组分系统的活动与各种细菌的重要过程有关,从共生到氮气和能量代谢。在兼源性嗜菌嗜酚杆菌中,双组分系统NTRYX的丧失导致对一些已知的细胞包膜活性化合物的脂质产生和敏感性增加。在本研究中,我们表明NTRYX直接控制单元包络的多个属性。我们发现反应调节剂NTRX结合细胞包膜基因的上游,包括参与肽聚糖生物合成和改性和细胞分裂的人。我们表明NTRYX的丧失会影响肽聚糖前体和脂多糖的细胞水平,并改变细胞包络结构,增加细胞长度和周质的厚度。在没有NTRYX的情况下,细胞包膜功能也被破坏,导致外膜渗透性增加。基于缺乏NTRYX和靶基因的T.Sphaeroides细胞在该双组分系统的直接控制下的性质,我们提出了NTRYX在细胞的组装,结构和功能中发挥了先前未描述的,并且可能节约的作用在各种细菌中的信封。

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