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首页> 外文期刊>Molecular Microbiology >The Staphylococcus aureus Staphylococcus aureus ArlRS two‐component system regulates virulence factor expression through MgrA
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The Staphylococcus aureus Staphylococcus aureus ArlRS two‐component system regulates virulence factor expression through MgrA

机译:金黄色葡萄球菌金黄色葡萄球菌Arlrs双组分体系调节通过mgra的毒力因子表达

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摘要

Summary The Gram‐positive bacterium, Staphylococcus aureus, is a versatile pathogen that can sense and adapt to a wide variety of environments within the human host, in part through its 16 two‐component regulatory systems. The ArlRS two‐component system has been shown to affect many cellular processes in S. aureus , including autolysis, biofilm formation, capsule synthesis and virulence. Yet the molecular details of this regulation remained largely unknown. We used RNA sequencing to identify the ArlRS regulon, and found 70% overlap with that of the global regulator MgrA. These genes included cell wall‐anchored adhesins ( ebh , sdrD ), polysaccharide and capsule synthesis genes, cell wall remodeling genes ( lytN , ddh ), the urease operon, genes involved in metal transport ( feoA , mntH , sirA ), anaerobic metabolism genes ( adhE , pflA, nrdDG ) and a large number of virulence factors ( lukSF, lukAB, nuc, gehB, norB, chs, scn and esxA ). We show that ArlR directly activates expression of mgrA and identify a probable ArlR‐binding site (TTTTCTCAT‐N 4 ‐TTTTAATAA). A highly similar sequence is also found in the spx P2 promoter, which was recently shown to be regulated by ArlRS. We also demonstrate that ArlS has kinase activity toward ArlR in vitro , although it has slower kinetics than other similar histidine kinases.
机译:发明内容革兰氏阳性细菌,金黄色葡萄球菌是一种通用的病原体,可以在其16个双组分调节系统中感测和适应人体主体内的各种环境。 ARLRS双组分系统已被证明在S.UUREUS中影响许多细胞过程,包括自溶,生物膜形成,胶囊合成和毒力。然而,这种调节的分子细节仍然很大程度上未知。我们使用RNA测序来识别ARLRS调节件,并发现全球调节器MGRA的70%重叠。这些基因包括细胞壁锚定粘附素(EBH,SDRD),多糖和胶囊合成基因,细胞壁重塑基因(Lytn,DDH),脲酶操纵子,参与金属运输(FeoA,MnTh,Sira)的基因,厌氧代谢基因(adhe,pfla,nrddg)和大量的毒力因子(luksf,lukab,nuc,gehb,norb,chs,scn和Esxa)。我们表明ARLR直接激活MGRA的表达并识别可能的ARLR结合位点(TTTTCTCAT-N 4 -TTTTAATAA)。在SPX P2启动子中也发现了高度相似的序列,其最近显示由ARLRS调节。我们还证明ARL在体外具有朝向ARLR的激酶活性,尽管其具有比其他类似的组氨酸激酶更慢的动力学。

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  • 来源
    《Molecular Microbiology》 |2020年第1期|共19页
  • 作者单位

    Department of Immunology and MicrobiologyUniversity of Colorado School of MedicineAurora CO USA;

    Department of BiochemistryUniversity of Iowa Carver College of MedicineIowa City IA USA;

    Department of Immunology and MicrobiologyUniversity of Colorado School of MedicineAurora CO USA;

    Department of BiochemistryUniversity of Iowa Carver College of MedicineIowa City IA USA;

    Department of BiochemistryUniversity of Iowa Carver College of MedicineIowa City IA USA;

    Department of Immunology and MicrobiologyUniversity of Colorado School of MedicineAurora CO USA;

    Department of BiochemistryUniversity of Iowa Carver College of MedicineIowa City IA USA;

    Department of Immunology and MicrobiologyUniversity of Colorado School of MedicineAurora CO USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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