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Pseudomonas aeruginosa PA1006, Which Plays a Role in Molybdenum Homeostasis, Is Required for Nitrate Utilization, Biofilm Formation, and Virulence

机译:铜绿假单胞菌PA1006在钼稳态中起作用,是硝酸盐利用,生物膜形成和毒性的必需条件

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摘要

Pseudomonas aeruginosa (Pae) is a clinically important opportunistic pathogen. Herein, we demonstrate that the PA1006 protein is critical for all nitrate reductase activities, growth as a biofilm in a continuous flow system, as well as virulence in mouse burn and rat lung model systems. Microarray analysis revealed that ΔPA1006 cells displayed extensive alterations in gene expression including nitrate-responsive, quorum sensing (including PQS production), and iron-regulated genes, as well as molybdenum cofactor and Fe-S cluster biosynthesis factors, members of the TCA cycle, and Type VI Secretion System components. Phenotype Microarray™ profiles of ΔPA1006 aerobic cultures using Biolog plates also revealed a reduced ability to utilize a number of TCA cycle intermediates as well as a failure to utilize xanthine as a sole source of nitrogen. As a whole, these data indicate that the loss of PA1006 confers extensive changes in Pae metabolism. Based upon homology of PA1006 to the E. coli YhhP protein and data from the accompanying study, loss of PA1006 persulfuration and/or molybdenum homeostasis are likely the cause of extensive metabolic alterations that impact biofilm development and virulence in the ΔPA1006 mutant.
机译:铜绿假单胞菌(Pae)是临床上重要的机会性病原体。在本文中,我们证明了PA1006蛋白对于所有硝酸还原酶活性,在连续流动系统中作为生物膜的生长以及在小鼠烧伤和大鼠肺部模型系统中的毒力均至关重要。微阵列分析显示,ΔPA1006细胞显示出广泛的基因表达变化,包括硝酸盐响应,群体感应(包括PQS产生)和铁调节基因,以及钼辅因子和Fe-S簇生物合成因子,TCA循环成员,和类型VI分泌系统组件。使用Biolog板的ΔPA1006有氧培养物的Phenotype Microarray™谱也显示出利用多种TCA循环中间体的能力降低,并且无法利用黄嘌呤作为唯一的氮源。总体而言,这些数据表明,PA1006的缺失使Pae代谢发生广泛变化。基于PA1006与大肠杆菌YhhP蛋白的同源性以及随附研究的数据,PA1006过硫酸化和/或钼稳态失衡很可能是造成广泛代谢变化的原因,这些变化会影响ΔPA1006突变体的生物膜发育和致病性。

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