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Direct Glutaminyl-tRNA Biosynthesis and Indirect Asparaginyl-tRNA Biosynthesis in Pseudomonas aeruginosa PAO1

机译:铜绿假单胞菌PAO1中直接谷氨酰胺基-tRNA的生物合成和间接天冬酰胺基-tRNA的生物合成

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摘要

The genomic sequence of Pseudomonas aeruginosa PAO1 was searched for the presence of open reading frames (ORFs) encoding enzymes potentially involved in the formation of Gln-tRNA and of Asn-tRNA. We found ORFs similar to known glutamyl-tRNA synthetases (GluRS), glutaminyl-tRNA synthetases (GlnRS), aspartyl-tRNA synthetases (AspRS), and trimeric tRNA-dependent amidotransferases (AdT) but none similar to known asparaginyl-tRNA synthetases (AsnRS). The absence of AsnRS was confirmed by biochemical tests with crude and fractionated extracts of P. aeruginosa PAO1, with the homologous tRNA as the substrate. The characterization of GluRS, AspRS, and AdT overproduced from their cloned genes in P. aeruginosa and purified to homogeneity revealed that GluRS is discriminating in the sense that it does not glutamylate tRNAGln, that AspRS is nondiscriminating, and that its Asp-tRNAAsn product is transamidated by AdT. On the other hand, tRNAGln is directly glutaminylated by GlnRS. These results show that P. aeruginosa PAO1 is the first organism known to synthesize Asn-tRNA via the indirect pathway and to synthesize Gln-tRNA via the direct pathway. The essential role of AdT in the formation of Asn-tRNA in P. aeruginosa and the absence of a similar activity in the cytoplasm of eukaryotic cells identifies AdT as a potential target for antibiotics to be designed against this human pathogen. Such novel antibiotics could be active against other multidrug-resistant gram-negative pathogens such as Burkholderia and Neisseria as well as all pathogenic gram-positive bacteria.
机译:搜索铜绿假单胞菌PAO1的基因组序列,寻找编码可能参与Gln-tRNA和Asn-tRNA形成的酶的开放阅读框(ORF)的存在。我们发现ORF与已知的谷氨酰胺基tRNA合成酶(GluRS),谷氨酰胺基tRNA合成酶(GlnRS),天冬氨酰tRNA合成酶(AspRS)和三聚体tRNA依赖性酰胺基转移酶(AdT)相似,但与已知的天冬酰胺基tRNA合成酶(AsnRS)相似。 )。通过以铜绿假单胞菌PAO1的粗提物和分馏物提取物,以同源tRNA为底物,通过生化测试确认了AsnRS的缺失。从铜绿假单胞菌的克隆基因中过量生产并纯化至均一的GluRS,AspRS和AdT的特征表明,GluRS在不将谷氨酰胺化tRNA Gln 的意义上具有区别性,即AspRS不区分,并且其Asp-tRNA Asn 产品已被AdT转氨。另一方面,tRNA Gln 被GlnRS直接谷氨酰胺化。这些结果表明铜绿假单胞菌PAO1是已知的第一种通过间接途径合成Asn-tRNA和通过直接途径合成Gln-tRNA的生物。 AdT在铜绿假单胞菌中Asn-tRNA形成中的重要作用以及在真核细胞的细胞质中缺乏类似的活性将AdT鉴定为针对这种人类病原体设计抗生素的潜在靶标。这种新型抗生素可能对其他多重耐药的革兰氏阴性病原体(如伯克霍尔德氏菌和奈瑟氏球菌)以及所有病原性革兰氏阳性菌具有活性。

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