首页> 外文期刊>BMC Microbiology >Utilization of L-glutamate as a preferred or sole nutrient in Pseudomonas aeruginosa PAO1 depends on genes encoding for the enhancer-binding protein AauR, the sigma factor RpoN and the transporter complex AatJQMP
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Utilization of L-glutamate as a preferred or sole nutrient in Pseudomonas aeruginosa PAO1 depends on genes encoding for the enhancer-binding protein AauR, the sigma factor RpoN and the transporter complex AatJQMP

机译:作为铜绿假单胞菌Pao1中优选的或唯一营养素的L-谷氨酸的利用取决于编码增强剂结合蛋白耳,Sigma因子Rpon和运输工具复合物AATJQMP的基因

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Glutamate and aspartate are preferred nutrients for a variety of microorganisms. In the case for many Pseudomonas spp., utilization of these amino acids is believed to be dependent on a transporter complex comprised of a periplasmic-solute binding protein (AatJ), two permease domains (AatQM) and an ATP-binding component (AatP). Notably, expression of this transporter complex is hypothesized to be regulated at the transcriptional level by the enhancer-binding protein AauR and the alternative sigma factor RpoN. The purpose of the current study was to determine the biological significance of the putative aatJ-aatQMP operon and its regulatory aauR and rpoN genes in the utilization of L-glutamate, L-glutamine, L-aspartate and L-asparagine in Pseudomonas aeruginosa PAO1. Deletion of the aatJ-aatQMP, aauR or rpoN genes did not affect the growth of P. aeruginosa PAO1 on L-glutamate, L-glutamine, L-aspartate and L-asparagine equally. Instead, only growth on L-glutamate as the sole carbon source was abolished with the deletion of any one of these genes. Interestingly, growth of the aauR mutant on L-glutamate was readily restored via plasmid-based expression of the aatQMP genes, suggesting that it is the function of AatQMP (and not AatJ) that is limiting in the absence of the aauR gene. Subsequent analysis of beta-galactosidase reporters revealed that both aatJ and aatQ were induced in response to L-glutamate, L-glutamine, L-aspartate or L-asparagine in a manner dependent on the aauR and rpoN genes. In addition, both aatJ and aatQ were expressed at reduced levels in the absence of the inducing-amino acids and the regulatory aauR and rpoN genes. The expression of the aatJ-aatQMP genes is, therefore, multifaceted. Lastly, the expression levels of aatJ were significantly higher (?5 fold) than that of aatQ under all tested conditions. The primary function of AauR in P. aeruginosa PAO1 is to activate expression of the aatJ-aatQMP genes in response to exogenous acidic amino acids and their amide derivatives. Importantly, it is the AauR-RpoN mediated induction of the aatQMP genes that is the pivotal factor enabling P. aeruginosa PAO1 to effectively utilize or consume L-glutamate as a sole or preferred nutrient.
机译:谷氨酸和天冬氨酸是各种微生物的优选营养素。在许多假单胞菌SPP的情况下,认为这些氨基酸的利用依赖于由周质溶质结合蛋白(AATJ),两个允许域(AATQM)和ATP结合组分(AATP)组成的转运络合物。 。值得注意的是,将该转运蛋白复合物的表达被假设以增强子结合蛋白AUR和替代的Sigma因子RPON在转录水平上调节。目前研究的目的是确定推定的AATJ-AATQMP操纵子及其调节AUR和RPON基因在利用L-谷氨酰胺,L-谷氨酰胺,L-天冬氨酸和L-天冬酰胺的生物学意义。缺失AATJ-AATQMP,AUR或RPON基因的缺失不影响L-谷氨酸,L-谷氨酰胺,L-天冬氨酸和L-天酰胺的P. Aerginosa Pao1的生长。相反,由于缺失了这些基因中的任何一种,因此仅作为唯一碳源的L-谷氨酸酸盐的增长。有趣的是,通过基于质粒的AATQMP基因的基于质粒的表达,容易恢复烧伽雷突变体的生长,这表明它是在没有AUTE基因的情况下限制的AATQMP(而不是AATJ)的功能。 β-半乳糖苷酶记者的随后分析显示,响应于L-谷氨酸,L-谷氨酰胺,L-天冬氨酸或L-天冬酰胺的方式诱导AATJ和AATQ,以依赖于AUR和RPON基因。此外,在没有诱导氨基酸和调节耳和RPON基因的情况下,AATJ和AATQ都以降低的水平表达。因此,AATJ-AATQMP基因的表达是多方面的。最后,AATJ的表达水平明显高于(&Δ5倍),而不是AATQ在所有测试条件下。 AuR在P.铜绿假单胞菌PaO1中的主要功能是响应外源性酸性氨基酸及其酰胺衍生物激活AATJ-AATQMP基因的表达。重要的是,AAT-RPON介导的AATQMP基因的诱导是能够有效地利用或消​​耗L-谷氨酸作为唯一或优选的营养素的枢转因子。

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