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OxyR 和 SoxR 转录调节因子参与了 Paraburkholderia xenovorans LB400 广泛的氧化应激反应。

The OxyR and SoxR transcriptional regulators are involved in a broad oxidative stress response in Paraburkholderia xenovorans LB400.

机构信息

Laboratorio de Microbiología Molecular y Biotecnología Ambiental, Departamento de Química and Centro de Biotecnología Dr. Daniel Alkalay Lowitt, Universidad Técnica Federico Santa María, Avenida España, 1680, Valparaíso, Chile.

Centro de Ingeniería Genética y Biotecnología, Ave. 31 No. 15802, Playa Havana, Cuba.

出版信息

Biol Res. 2022 Feb 20;55(1):7. doi: 10.1186/s40659-022-00373-7.

Abstract

BACKGROUND

Aerobic metabolism generates reactive oxygen species that may cause critical harm to the cell. The aim of this study is the characterization of the stress responses in the model aromatic-degrading bacterium Paraburkholderia xenovorans LB400 to the oxidizing agents paraquat and HO.

METHODS

Antioxidant genes were identified by bioinformatic methods in the genome of P. xenovorans LB400, and the phylogeny of its OxyR and SoxR transcriptional regulators were studied. Functionality of the transcriptional regulators from strain LB400 was assessed by complementation with LB400 SoxR of null mutant P. aeruginosa ΔsoxR, and the construction of P. xenovorans pIZoxyR that overexpresses OxyR. The effects of oxidizing agents on P. xenovorans were studied measuring bacterial susceptibility, survival and ROS formation after exposure to paraquat and HO. The effects of these oxidants on gene expression (qRT-PCR) and the proteome (LC-MS/MS) were quantified.

RESULTS

P. xenovorans LB400 possesses a wide repertoire of genes for the antioxidant defense including the oxyR, ahpC, ahpF, kat, trxB, dpsA and gorA genes, whose orthologous genes are regulated by the transcriptional regulator OxyR in E. coli. The LB400 genome also harbors the soxR, fumC, acnA, sodB, fpr and fldX genes, whose orthologous genes are regulated by the transcriptional regulator SoxR in E. coli. The functionality of the LB400 soxR gene was confirmed by complementation of null mutant P. aeruginosa ΔsoxR. Growth, susceptibility, and ROS formation assays revealed that LB400 cells were more susceptible to paraquat than HO. Transcriptional analyses indicated the upregulation of the oxyR, ahpC1, katE and ohrB genes in LB400 cells after exposure to HO, whereas the oxyR, fumC, ahpC1, sodB1 and ohrB genes were induced in presence of paraquat. Proteome analysis revealed that paraquat induced the oxidative stress response proteins AhpCF and DpsA, the universal stress protein UspA and the RNA chaperone CspA. Both oxidizing agents induced the Ohr protein, which is involved in organic peroxide resistance. Notably, the overexpression of the LB400 oxyR gene in P. xenovorans significantly decreased the ROS formation and the susceptibility to paraquat, suggesting a broad OxyR-regulated antioxidant response.

CONCLUSIONS

This study showed that P. xenovorans LB400 possess a broad range oxidative stress response, which explain the high resistance of this strain to the oxidizing compounds paraquat and HO.

摘要

背景

有氧代谢会产生活性氧物种,可能对细胞造成严重伤害。本研究的目的是研究芳香族降解菌 Paraburkholderia xenovorans LB400 对氧化应激剂百草枯和 HO 的应激反应。

方法

通过生物信息学方法在 P. xenovorans LB400 的基因组中鉴定抗氧化基因,并研究其 OxyR 和 SoxR 转录调节剂的系统发育。通过用 P. aeruginosa ΔsoxR 的 LB400 SoxR 互补功能缺失突变体,以及构建过表达 OxyR 的 P. xenovorans pIZoxyR,评估 LB400 转录调节剂的功能。通过测量接触百草枯和 HO 后细菌的易感性、存活率和 ROS 形成来研究氧化应激剂对 P. xenovorans 的影响。通过 qRT-PCR 和 LC-MS/MS 定量研究这些氧化剂对基因表达和蛋白质组的影响。

结果

P. xenovorans LB400 拥有广泛的抗氧化防御基因,包括 oxyR、ahpC、ahpF、kat、trxB、dpsA 和 gorA 基因,其同源基因在大肠杆菌中受转录调节剂 OxyR 调控。LB400 基因组还含有 soxR、fumC、acnA、sodB、fpr 和 fldX 基因,其同源基因在大肠杆菌中受转录调节剂 SoxR 调控。通过用 P. aeruginosa ΔsoxR 的 LB400 soxR 互补功能缺失突变体,证实了 LB400 soxR 基因的功能。生长、易感性和 ROS 形成测定表明,LB400 细胞对百草枯比 HO 更敏感。转录分析表明,HO 暴露后 LB400 细胞中 oxyR、ahpC1、katE 和 ohrB 基因上调,而接触百草枯时 oxyR、fumC、ahpC1、sodB1 和 ohrB 基因被诱导。蛋白质组分析表明,百草枯诱导 AhpCF 和 DpsA、普遍应激蛋白 UspA 和 RNA 伴侣 CspA 等氧化应激反应蛋白。两种氧化剂均诱导参与过氧化物抗性的 Ohr 蛋白。值得注意的是,P. xenovorans 中 LB400 oxyR 基因的过表达显著降低了 ROS 的形成和对百草枯的易感性,表明存在广泛的 OxyR 调控的抗氧化反应。

结论

本研究表明,P. xenovorans LB400 具有广泛的氧化应激反应,这解释了该菌株对氧化应激化合物百草枯和 HO 具有高抗性的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0c9/8859910/8e04e15e5528/40659_2022_373_Fig1_HTML.jpg

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