MarA, SoxS and Rob of Escherichia coli - Global regulators of multidrug resistance, virulence and stress response.

Valérie Duval, Ida M Lister
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引用次数: 102

Abstract

Bacteria have a great capacity for adjusting their metabolism in response to environmental changes by linking extracellular stimuli to the regulation of genes by transcription factors. By working in a co-operative manner, transcription factors provide a rapid response to external threats, allowing the bacteria to survive. This review will focus on transcription factors MarA, SoxS and Rob in Escherichia coli, three members of the AraC family of proteins. These homologous proteins exemplify the ability to respond to multiple threats such as oxidative stress, drugs and toxic compounds, acidic pH, and host antimicrobial peptides. MarA, SoxS and Rob recognize similar DNA sequences in the promoter region of more than 40 regulatory target genes. As their regulons overlap, a finely tuned adaptive response allows E. coli to survive in the presence of different assaults in a co-ordinated manner. These regulators are well conserved amongst Enterobacteriaceae and due to their broad involvement in bacterial adaptation in the host, have recently been explored as targets to develop new anti-virulence agents. The regulators are also being examined for their roles in novel technologies such as biofuel production.

大肠杆菌的MarA, SoxS和Rob -多药耐药,毒力和应激反应的全球调节因子。
细菌通过将细胞外刺激与转录因子对基因的调节联系起来,具有调节自身代谢以应对环境变化的强大能力。通过合作的方式,转录因子对外部威胁做出快速反应,使细菌得以生存。本文将重点介绍AraC蛋白家族的三个成员——大肠杆菌中的转录因子MarA、SoxS和Rob。这些同源蛋白具有应对多种威胁的能力,如氧化应激、药物和有毒化合物、酸性pH值和宿主抗菌肽。MarA、SoxS和Rob在40多个调控靶基因的启动子区域识别出相似的DNA序列。由于它们的规则重叠,一种微调的适应性反应使大肠杆菌能够以协调的方式在不同的攻击中存活下来。这些调节因子在肠杆菌科中很好地保守,由于它们广泛参与宿主的细菌适应,最近被探索作为开发新的抗毒剂的靶点。监管机构还因其在生物燃料生产等新技术中的作用而受到审查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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