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Cloning, Deletion, and Characterization of PadR, the Transcriptional Repressor of the Phenolic Acid Decarboxylase-Encoding padA Gene of Lactobacillus plantarum

机译:植物乳杆菌中编码酚酸脱羧酶的padA基因的转录阻遏物PadR的克隆,缺失和鉴定

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摘要

Lactobacillus plantarum displays a substrate-inducible padA gene encoding a phenolic acid decarboxylase enzyme (PadA) that is considered a specific chemical stress response to the inducing substrate. The putative regulator of padA was located in the padA locus based on its 52% identity with PadR, the padA gene transcriptional regulator of Pediococcus pentosaceus (L. Barthelmebs, B. Lecomte, C. Diviès, and J.-F. Cavin, J. Bacteriol. 182:6724-6731, 2000). Deletion of the L. plantarum padR gene clearly demonstrates that the protein it encodes is the transcriptional repressor of divergently oriented padA. The padR gene is cotranscribed with a downstream open reading frame (ORF1), the product of which may belong to a group of universal stress proteins (Usp). The padR deletion mutant overexpressed padA constitutively, and the padA promoter appears to be tightly regulated in this bacterium. Gel mobility shift assays using the padA gene promoter region and purified PadR expressed in Escherichia coli indicated that operator DNA binding by PadR was not eliminated by addition of p-coumarate. Gel mobility shift assays using partially purified extracts of native PadR protein from both phenolic acid-induced and noninduced L. plantarum cells demonstrate that inactivation of PadR by phenolic acids requires the integrity of L. plantarum and mediation by a specific protein absent in E. coli.
机译:植物乳杆菌显示底物可诱导的padA基因,该基因编码酚酸脱羧酶(PadA),被认为是对诱导底物的特定化学应激反应。推测的padA调节子位于padA基因座中,基于其与戊糖小球菌(Padiococcus pentosaceus)的padA基因转录调节子PadR(L.Barthelmebs,B.Lecomte,C.Diiès和J.-F.Cavin,J.细菌学杂志182:6724-6731,2000)。植物乳杆菌padR基因的删除清楚地表明,它编码的蛋白质是发散取向的padA的转录阻遏物。 padR基因与下游开放阅读框(ORF1)共转录,其产物可能属于一组普遍应激蛋白(Usp)。 padR缺失突变体组成型过度表达padA,而padA启动子似乎在该细菌中受到严格调控。使用在大肠杆菌中表达的padA基因启动子区域和纯化的PadR进行的凝胶迁移率迁移分析表明,通过添加对香豆酸酯不能消除PadR结合的操纵子DNA。使用从酚酸诱导的和未诱导的植物乳杆菌细胞中部分纯化的天然PadR蛋白提取物进行的凝胶迁移率移动分析表明,酚酸使PadR失活需要植物乳杆菌的完整性和大肠杆菌中不存在的特定蛋白的介导。

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