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志贺氏菌 gltQ-rs 基因的表达与 dksA 相关,并受转录终止子的控制。

Expression of Shigella flexneri gluQ-rs gene is linked to dksA and controlled by a transcriptional terminator.

机构信息

Program of Microbiology and Mycology, Institute of Biomedical Science-ICBM, Faculty of Medicine, University of Chile, Santiago, Chile.

出版信息

BMC Microbiol. 2012 Oct 5;12:226. doi: 10.1186/1471-2180-12-226.

Abstract

BACKGROUND

Glutamyl queuosine-tRNA(Asp) synthetase (GluQ-RS) is a paralog of the catalytic domain of glutamyl-tRNA synthetase and catalyzes the formation of glutamyl-queuosine on the wobble position of tRNA(Asp). Here we analyze the transcription of its gene in Shigella flexneri, where it is found downstream of dksA, which encodes a transcriptional regulator involved in stress responses.

RESULTS

The genomic organization, dksA-gluQ-rs, is conserved in more than 40 bacterial species. RT-PCR assays show co-transcription of both genes without a significant change in transcript levels during growth of S. flexneri. However, mRNA levels of the intergenic region changed during growth, increasing at stationary phase, indicating an additional level of control over the expression of gluQ-rs gene. Transcriptional fusions with lacZ as a reporter gene only produced β-galactosidase activity when the constructs included the dksA promoter, indicating that gluQ-rs do not have a separate promoter. Using bioinformatics, we identified a putative transcriptional terminator between dksA and gluQ-rs. Deletion or alteration of the predicted terminator resulted in increased expression of the lacZ reporter compared with cells containing the wild type terminator sequence. Analysis of the phenotype of a gluQ-rs mutant suggested that it may play a role in some stress responses, since growth of the mutant was impaired in the presence of osmolytes.

CONCLUSIONS

The results presented here, show that the expression of gluQ-rs depends on the dksA promoter, and strongly suggest the presence and the functionality of a transcriptional terminator regulating its expression. Also, the results indicate a link between glutamyl-queuosine synthesis and stress response in Shigella flexneri.

摘要

背景

谷氨酰-Queuosine-tRNA(Asp)合成酶(GluQ-RS)是谷氨酰-tRNA 合成酶催化结构域的同源物,催化 tRNA(Asp)的摆动位置上 Queuosine 的谷氨酰化。在这里,我们分析了 Shigella flexneri 中其基因的转录,该基因位于 dksA 下游,后者编码参与应激反应的转录调节因子。

结果

dksA-gluQ-rs 的基因组组织在 40 多种细菌中得到保守。RT-PCR 检测表明,在 S. flexneri 的生长过程中,这两个基因是共转录的,而转录本水平没有明显变化。然而,基因间区的 mRNA 水平在生长过程中发生变化,在静止期增加,表明对 gluQ-rs 基因表达的额外控制水平。以 lacZ 为报告基因的转录融合仅在构建体包含 dksA 启动子时才产生β-半乳糖苷酶活性,表明 gluQ-rs 没有独立的启动子。通过生物信息学,我们在 dksA 和 gluQ-rs 之间鉴定了一个推定的转录终止子。与含有野生型终止子序列的细胞相比,缺失或改变预测的终止子导致 lacZ 报告基因的表达增加。GluQ-rs 突变体的表型分析表明,它可能在某些应激反应中发挥作用,因为在渗透剂存在下突变体的生长受到损害。

结论

这里提出的结果表明,gluQ-rs 的表达依赖于 dksA 启动子,并强烈表明存在并具有调节其表达的转录终止子。此外,结果表明在 Shigella flexneri 中谷氨酰-Queuosine 合成与应激反应之间存在联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a76/3542578/f13b3c5d4730/1471-2180-12-226-1.jpg

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