Graduate School of Environmental and Life Science, Okayama University, Tsushima-naka 1-1-1, Kita-ku, Okayama, 700-8530, Japan.
Faculty of Agriculture, Okayama University, Tsushima-naka 1-1-1, Kita-ku, Okayama, 700-8530, Japan.
Mol Genet Genomics. 2018 Aug;293(4):907-917. doi: 10.1007/s00438-018-1430-9. Epub 2018 Mar 16.
Our previous studies revealed that flagellar-motility-defective mutants such as ∆fliC of Pseudomonas syringae pv. tabaci 6605 (Pta6605) have remarkably reduced production of N-acyl-homoserine lactones (AHL), quorum-sensing molecules. To investigate the reason of loss of AHL production in ∆fliC mutant, we carried out transposon mutagenesis. Among approximately 14,000 transconjugants, we found 11 AHL production-recovered (APR) strains. In these APR strains, a transposon was inserted into either mexE or mexF, genes encoding for the multidrug efflux pump transporter MexEF-OprN, and mexT, a gene encoding a putative transcriptional activator for mexEF-oprN. These results suggest that MexEF-OprN is a negative regulator of AHL production. To confirm the negative effect of MexEF-OprN on AHL production, loss- and gain-of-function experiments for mexEF-oprN were carried out. The ∆fliC∆mexF and ∆fliC∆mexT double mutant strains recovered AHL production, whereas the mexT overexpressing strain abolished AHL production, although the psyI, a gene encoding AHL synthase, is transcribed as wild type. Introduction of a mexF or mexT mutation into another flagellar-motility- and AHL production-defective mutant strain, ∆motCD, also recovered the ability to produce AHL. Furthermore, introduction of the mexF mutation into other AHL production-defective mutant strains such as ∆gacA and ∆aefR also recovered AHL production but not to the ∆psyI mutant. These results indicate that MexEF-OprN is a decisive negative determinant of AHL production and accumulation.
我们之前的研究表明,鞭毛运动缺陷突变体,如假单胞菌 pv. tabaci 6605 的 ∆fliC(Pta6605),会显著减少 N-酰基高丝氨酸内酯(AHL),即群体感应分子的产生。为了研究 ∆fliC 突变体中 AHL 产生减少的原因,我们进行了转座子诱变。在大约 14000 个转导子中,我们发现了 11 株 AHL 生产恢复(APR)菌株。在这些 APR 菌株中,转座子插入了 mexE 或 mexF 基因中,这两个基因编码多药外排泵转运蛋白 MexEF-OprN,以及 mexT 基因,该基因编码 MexEF-oprN 的一个假定转录激活因子。这些结果表明 MexEF-OprN 是 AHL 产生的负调控因子。为了证实 MexEF-OprN 对 AHL 产生的负效应,我们进行了 mexEF-oprN 的缺失和获得功能实验。与 ∆fliC∆mexF 和 ∆fliC∆mexT 双突变株相比,缺失突变株恢复了 AHL 产生,而 mexT 过表达株则消除了 AHL 产生,尽管 psyI 基因,即 AHL 合酶基因,转录正常。将 mexF 或 mexT 突变引入另一个鞭毛运动和 AHL 产生缺陷突变株 ∆motCD 中,也恢复了 AHL 产生能力。此外,将 mexF 突变引入其他 AHL 产生缺陷突变株,如 ∆gacA 和 ∆aefR 中,也恢复了 AHL 产生,但不能恢复到 ∆psyI 突变株的水平。这些结果表明,MexEF-OprN 是 AHL 产生和积累的决定性负决定因素。