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独特的调节剂 SrpR 介导铜绿假单胞菌 B6-2(DSM 28064)中外排泵 TtgABC 和 SrpABC 之间的串扰。

Unique regulator SrpR mediates crosstalk between efflux pumps TtgABC and SrpABC in Pseudomonas putida B6-2 (DSM 28064).

机构信息

State Key Laboratory of Microbial Metabolism, Joint International Research Laboratory of Metabolic & Developmental Sciences, and School of Life Sciences & Biotechnology, Shanghai Jiao Tong University, Shanghai, People's Republic of China.

School of Chemistry and Life Sciences, Suzhou University of Science and Technology, Suzhou, People's Republic of China.

出版信息

Mol Microbiol. 2021 Jan;115(1):131-141. doi: 10.1111/mmi.14605. Epub 2020 Oct 6.

Abstract

The coexistence of multiple homologous resistance-nodulation-division (RND) efflux pumps in bacteria is frequently described with overlapping substrate profiles. However, it is unclear how bacteria balance their transcription in response to the changing environment. Here, we characterized a repressor, SrpR, in Pseudomonas putida B6-2 (DSM 28064), whose coding gene is adjacent to srpS that encodes the local repressor of the RND-type efflux pump SrpABC gene cluster. SrpR was demonstrated as a specific repressor of another RND efflux pump gene cluster ttgABC that is locally repressed by TtgR. SrpR was found to be capable of binding to the ttgABC operator with a higher affinity (K , 138.0 nM) compared to TtgR (K , 15.4 μM). EMSA and β-galactosidase assays were performed to survey possible effectors of SrpR with 35 available chemicals being tested. Only 2,3,4-trichlorophenol was identified as an effector of SrpR. A regulation model was then proposed, representing a novel strategy for balancing the efflux systems with partially overlapping substrate profiles. This study highlights sophisticated interactions among the RND efflux pumps in a Pseudomonas strain, which may endow bacteria with certain advantages in a fluctuant environment.

摘要

细菌中多种同源的耐药-结节-分裂(RND)外排泵的共存通常具有重叠的底物谱。然而,目前尚不清楚细菌如何根据环境变化来平衡其转录。在这里,我们对恶臭假单胞菌 B6-2(DSM 28064)中的一种阻遏物 SrpR 进行了表征,其编码基因与编码 RND 型外排泵 SrpABC 基因簇局部阻遏物的 srpS 相邻。SrpR 被证明是另一个 RND 外排泵基因簇 ttgABC 的特异性阻遏物,该基因簇由 TtgR 局部阻遏。与 TtgR(Kd,15.4 μM)相比,SrpR 被发现能够以更高的亲和力(Kd,138.0 nM)结合 ttgABC 操纵子。进行了 EMSA 和β-半乳糖苷酶测定,以调查 SrpR 可能的效应物,共测试了 35 种可用化学物质。只有 2,3,4-三氯苯酚被鉴定为 SrpR 的效应物。然后提出了一个调控模型,代表了一种平衡具有部分重叠底物谱的外排系统的新策略。这项研究强调了假单胞菌中 RND 外排泵之间的复杂相互作用,这可能使细菌在波动的环境中具有某些优势。

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