首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >Metal homeostasis in bacteria: the role of ArsR-SmtB family of transcriptional repressors in combating varying metal concentrations in the environment
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Metal homeostasis in bacteria: the role of ArsR-SmtB family of transcriptional repressors in combating varying metal concentrations in the environment

机译:细菌中的金属稳态:ARSR-SMTB系列转录压缩机的作用在打击环境中不同的金属浓度

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Bacterial infections cause severe medical problems worldwide, resulting in considerable death and loss of capital. With the ever-increasing rise of antibiotic-resistant bacteria and the lack of development of new antibiotics, research on metal-based antimicrobial therapy has now gained pace. Metal ions are essential for survival, but can be highly toxic to organisms if their concentrations are not strictly controlled. Through evolution, bacteria have acquired complex metal-management systems that allow them to acquire metals that they need for survival in different challenging environments while evading metal toxicity. Metalloproteins that controls these elaborate systems in the cell, and linked to key virulence factors, are promising targets for the anti-bacterial drug development. Among several metal-sensory transcriptional regulators, the ArsR-SmtB family displays greatest diversity with several distinct metal-binding and nonmetal-binding motifs that have been characterized. These prokaryotic metolloregulatory transcriptional repressors represses the expression of operons linked to stress-inducing concentrations of metal ions by directly binding to the regulatory regions of DNA, while derepression results from direct binding of metal ions by these homodimeric proteins. Many bacteria, e.g., Mycobacterium tuberculosis, Bacillus anthracis, etc., have evolved to acquire multiple metal-sensory motifs which clearly demonstrate the importance of regulating concentrations of multiple metal ions. Here, we discussed the mechanisms of how ArsR-SmtB family regulates the intracellular bioavailability of metal ions both inside and outside of the host. Knowledge of the metal-challenges faced by bacterial pathogens and their survival strategies will enable us to develop the next generation drugs.
机译:细菌感染引起全世界严重的医疗问题,导致资本的大量死亡和失败。随着抗生素抗性细菌的不断增加以及缺乏新抗生素的发展,对金属的抗微生物治疗的研究现已获得了速度。金属离子对于存活至关重要,但如果浓度没有严格控制它们的浓度,对生物可能会对生物毒性剧毒。通过演化,细菌已经获得了复杂的金属管理系统,使他们能够获得金属,以获得它们在不同具有挑战性环境中生存的金属,同时避免金属毒性。控制细胞中这些精美系统并与关键毒力因子连接的金属蛋白是对抗细菌药物发育的有希望的靶标。在几种金属感觉转录调节因子中,ARSR-SMTB系列呈现出最大的多样性,具有所表征的几种不同的金属结合和非金属结合基序。这些原核性质溶解转录转录抑制剂通过直接与DNA的调节区域直接结合而抑制与胁迫诱导金属离子浓度的调节的表达,而DEREMENTION通过这些同型二聚体蛋白直接结合金属离子的直接结合。许多细菌,例如结核分枝杆菌,芽孢杆菌蒽虫等,已经进化以获得多种金属感官基序,该主题清楚地证明了调节多个金属离子浓度的重要性。在这里,我们讨论了ARSR-SMTB系列如何调节宿主内外金属离子细胞内生物利用度的机制。对细菌病原体面临的金属挑战的知识及其生存策略将使我们能够开发下一代药物。

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