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猪链球菌 TroR 负调控 TroABCD 系统,并且对于抵抗金属毒性和毒力是必需的。

TroR Negatively Regulates the TroABCD System and Is Required for Resistance to Metal Toxicity and Virulence in Streptococcus suis.

机构信息

Joint International Research Laboratory of Agriculture and Agri-Product Safety, the Ministry of Education of China, Yangzhou Universitygrid.268415.c, Yangzhou, China.

Jiangsu Key Laboratory of Zoonosis, Yangzhou Universitygrid.268415.c, Yangzhou, China.

出版信息

Appl Environ Microbiol. 2021 Sep 28;87(20):e0137521. doi: 10.1128/AEM.01375-21. Epub 2021 Aug 11.

Abstract

Streptococcus suis is an emerging zoonotic pathogen that causes severe swine and human infections. Metals are essential nutrients for life; however, excess metals are toxic to bacteria. Therefore, maintenance of intracellular metal homeostasis is important for bacterial survival. Here, we characterize a DtxR family metalloregulator, TroR, in S. suis. TroR is located upstream of the operon, whose expression was found to be significantly downregulated in response to excess manganese (Mn). Deletion of resulted in reduced growth when S. suis was cultured in metal-replete medium supplemented with elevated concentrations of zinc (Zn), copper (Cu), or cobalt (Co). Mn supplementation could alleviate the growth defects of the Δ mutant under Zn and Co excess conditions; however, it impaired the growth of the wild-type (WT) and complemented (CΔ) strains under Cu excess conditions. The growth of Δ was also inhibited in metal-depleted medium supplemented with elevated concentrations of Mn. Moreover, the Δ mutant accumulated increased levels of intracellular Mn and Co, rather than Zn and Cu. Deletion of in S. suis led to significant upregulation of the operon. Furthermore, expression in the WT strain was induced by ferrous iron [Fe(II)] and Co and repressed by Mn and Cu; the repression of was mediated by TroR. Finally, TroR is required for S. suis virulence in an intranasal mouse model. Together, these data suggest that TroR is a negative regulator of the TroABCD system and contributes to resistance to metal toxicity and virulence in S. suis. Metals are essential nutrients for life; however, the accumulation of excess metals in cells can be toxic to bacteria. In the present study, we identified a metalloregulator, TroR, in Streptococcus suis, which is an emerging zoonotic pathogen. In contrast to the observations in other species that TroR homologs usually contribute to the maintenance of homeostasis of one or two metals, we demonstrated that TroR is required for resistance to the toxicity conferred by multiple metals in S. suis. We also found that deletion of resulted in significant upregulation of the operon, which has been demonstrated to be involved in manganese acquisition in S. suis. Moreover, we demonstrated that TroR is required for the virulence of S. suis in an intranasal mouse model. Collectively, these results suggest that TroR is a negative regulator of the TroABCD system and contributes to resistance to metal toxicity and virulence in S. suis.

摘要

猪链球菌是一种新兴的人畜共患病病原体,可引起严重的猪和人类感染。金属是生命必需的营养物质;然而,过量的金属对细菌是有毒的。因此,维持细胞内金属稳态对细菌的生存至关重要。在这里,我们研究了猪链球菌中的一种 DtxR 家族金属调控因子 TroR。TroR 位于 操纵子的上游,我们发现该操纵子的表达在过量锰(Mn)存在时显著下调。当在含有高浓度锌(Zn)、铜(Cu)或钴(Co)的金属充足培养基中培养时,缺失 导致猪链球菌生长减少。Mn 的补充可以缓解 Zn 和 Co 过量条件下 Δ 突变体的生长缺陷;然而,它会损害野生型(WT)和互补(CΔ)菌株在 Cu 过量条件下的生长。在含有高浓度 Mn 的金属耗尽培养基中,Δ 的生长也受到抑制。此外,Δ 突变体积累了更多的细胞内 Mn 和 Co,而不是 Zn 和 Cu。在猪链球菌中缺失 导致 操纵子的显著上调。此外,在 WT 菌株中, 的表达被亚铁[Fe(II)]和 Co 诱导,被 Mn 和 Cu 抑制;TroR 介导了 的抑制。最后,TroR 是猪链球菌在鼻腔内小鼠模型中致病所必需的。综上所述,这些数据表明 TroR 是 TroABCD 系统的负调控因子,有助于抵抗金属毒性和猪链球菌的毒力。

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