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首页> 外文期刊>Biochemical and Biophysical Research Communications >CysB-dependent upregulation of the Salmonella Typhimurium cysJIH operon in response to antimicrobial compounds that induce oxidative stress
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CysB-dependent upregulation of the Salmonella Typhimurium cysJIH operon in response to antimicrobial compounds that induce oxidative stress

机译:鼠伤寒沙门氏菌cysJIH操纵子的CysB依赖性上调,以响应诱导氧化应激的抗菌化合物

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It has been proposed that some antibiotics exert additional damage through reactive oxygen species (ROS) production. Since H2S protects neurons and cardiac muscle from oxidative stress, it has been hypothesized that bacterial H2S might, similarly, be a cellular protector against antibiotics. In Enterobacteriaceae, H2S can be produced by the cysJIH pathway, which uses sulfate as the sulfur source. CysB, in turn, is a positive regulator of cysJIH. At present, the role of S. Typhimurium cysJIH operon in the protection to reactive oxygen species (ROS) induced by antimicrobial compounds remains to be elucidated. In this work, we evaluated the role of cysJIH and cysB in ROS accumulation, superoxide dismutase (SOD) activity, reduced thiol accumulation, and H2S accumulation in S. Typhimurium, cultured in either sulfate or cysteine as the sole sulfur source. Furthermore, we assessed the effects of the addition of ceftriaxone (CEF) and menadione (MEN) in these same parameters. In sulfate as the sole sulfur source, we found that the cysJIH operon and the cysB gene were required to full growth in minimal media, independently on the addition of CEF or MEN. Most importantly, both cysJIH and cysB contributed to diminish ROS levels, increase the SOD activity, increase the reduced thiols, and increase the H2S levels in presence of CEF or MEN. Moreover, the cysJIH operon exhibited a CysB-dependent upregulation in presence of these two antimicrobials compounds. On the other hand, when cysteine was used as the sole sulfur source, we found that cysJIH operon was completely negligible, were only cysB exhibited similar phenotypes than the described for sulfate as sulfur source. Unexpectedly, CysB downregulated cysJIH operon when cysteine was used instead of sulfate, suggesting a complex regulation of this system. (C) 2015 Elsevier Inc. All rights reserved.
机译:已经提出一些抗生素通过活性氧(ROS)的产生施加额外的损害。由于H2S保护神经元和心肌免受氧化应激,因此已经假设细菌H2S可能类似地是抗抗生素的细胞保护剂。在肠杆菌科中,H2S可以通过cysJIH途径产生,该途径使用硫酸盐作为硫源。反过来,CysB是cysJIH的正调节剂。目前,鼠伤寒沙门氏菌cysJIH操纵子在保护由抗菌化合物诱导的活性氧(ROS)中的作用仍有待阐明。在这项工作中,我们评估了cysJIH和cysB在ROS积累,超氧化物歧化酶(SOD)活性,减少的硫醇积累和H.S在鼠伤寒沙门氏菌中的积累中的作用,该细菌在硫酸盐或半胱氨酸中作为唯一的硫源培养。此外,我们评估了在这些相同参数中加入头孢曲松(CEF)和甲萘醌(MEN)的效果。在硫酸盐作为唯一的硫源的情况下,我们发现cysJIH操纵子和cysB基因在最小培养基中完全生长所需,而与添加CEF或MEN无关。最重要的是,在存在CEF或MEN的情况下,cysJIH和cysB均有助于降低ROS水平,增加SOD活性,增加还原的硫醇并增加H2S水平。此外,在这两种抗微生物化合物的存在下,cysJIH操纵子表现出CysB依赖性上调。另一方面,当半胱氨酸用作唯一的硫源时,我们发现cysJIH操纵子完全可以忽略,只有cysB的表型与硫酸盐作为硫源的表型相似。出乎意料的是,当使用半胱氨酸代替硫酸盐时,CysB会下调cysJIH操纵子,表明该系统的调控复杂。 (C)2015 Elsevier Inc.保留所有权利。

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