Literature DB >> 32598864

Identification of a novel gene argJ involved in arginine biosynthesis critical for persister formation in Staphylococcus aureus.

Rebecca Yee1, Peng Cui1, Wanliang Shi1, Jie Feng1, Jiou Wang2, Ying Zhang1,3.   

Abstract

Staphylococcus aureus can cause both acute and recurrent persistent infections such as peritonitis, endocarditis, abscesses, osteomyelitis, and chronic wound infections. Effective therapies to treat persistent disease are paramount. However, the mechanisms of S. aureus persistence are poorly understood. In this study, we performed a comprehensive and unbiased high-throughput mutant screen against a transposon-insertion mutant library of S. aureus USA300 and focused on the role of argJ encoding an acetyltransferase in the arginine biosynthesis pathway, whose transposon insertion caused a significant defect in persister formation using multiple drugs and stresses. Genetic complementation and arginine supplementation restored persistence in the argJ transposon insertion mutant while generation of mutations on the active site of the ArgJ protein caused a defect in persistence. Quantitative RT-PCR analysis showed that the genes encoded in the arg operon were over-expressed under drug stressed conditions and in stationary phase cultures. In addition, the argJ mutant had attenuated virulence in both mouse and C. elegans. Our studies identify a new mechanism of persistence mediated by arginine metabolism in S. aureus. These findings provide not only novel insights about the mechanisms of S. aureus persistence but also offer novel therapeutic targets that may help to develop more effective treatment of persistent S. aureus infections.

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Year:  2020        PMID: 32598864

Source DB:  PubMed          Journal:  Discov Med        ISSN: 1539-6509            Impact factor:   2.970


  2 in total

1.  Effects of Yellow Light on Airborne Microbial Composition and on the Transcriptome of Typical Marker Strain in Ward.

Authors:  Xuanqi Zhao; Jing Wei; Wenjie Chen; Xuan Xu; Ruizhe Zhu; Puyuan Tian; Tingtao Chen
Journal:  Dis Markers       Date:  2022-05-18       Impact factor: 3.464

2.  Single-cell Raman spectroscopy identifies Escherichia coli persisters and reveals their enhanced metabolic activities.

Authors:  Chuan Wang; Rongze Chen; Jian Xu; Lijian Jin
Journal:  Front Microbiol       Date:  2022-08-04       Impact factor: 6.064

  2 in total

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