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MvaT Family Proteins Encoded on IncP-7 Plasmid pCAR1 and the Host Chromosome Regulate the Host Transcriptome Cooperatively but Differently

机译:Incp-7质粒pCAR1和宿主染色体上编码的MvaT家族蛋白协同但不同地调节宿主转录组。

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MvaT proteins are members of the H-NS family of proteins in pseudomonads. The IncP-7 conjugative plasmid pCAR1 carries an mvaT-homologous gene, pmr. In Pseudomonas putida KT2440 bearing pCAR1, pmr and the chromosomally carried homologous genes, turA and turB, are transcribed at high levels, and Pmr interacts with TurA and TurB in vitro. In the present study, we clarified how the three MvaT proteins regulate the transcriptome of P. putida KT2440(pCAR1). Analyses performed by a modified chromatin immunoprecipitation assay with microarray technology (ChIP-chip) suggested that the binding regions of Pmr, TurA, and TurB in the P. putida KT2440(pCAR1) genome are almost identical; nevertheless, transcriptomic analyses using mutants with deletions of the genes encoding the MvaT proteins during the log and early stationary growth phases clearly suggested that their regulons were different. Indeed, significant regulon dissimilarity was found between Pmr and the other two proteins. Transcription of a larger number of genes was affected by Pmr deletion during early stationary phase than during log phase, suggesting that Pmr ameliorates the effects of pCAR1 on host fitness more effectively during the early stationary phase. Alternatively, the similarity of the TurA and TurB regulons implied that they might play complementary roles as global transcriptional regulators in response to plasmid carriage.
机译:MvaT蛋白是假单胞菌H-NS蛋白家族的成员。 IncP-7接合质粒pCAR1携带mvaT同源基因pmr。在携带pCAR1的恶臭假单胞菌KT2440中,pmr和染色体携带的同源基因turA和turB被高水平转录,并且Pmr在体外与TurA和TurB相互作用。在本研究中,我们阐明了三种MvaT蛋白如何调控恶臭假单胞菌KT2440(pCAR1)的转录组。通过改良的染色质免疫沉淀试验和微阵列技术(芯片)进行的分析表明,恶臭假单胞菌KT2440(pCAR1)基因组中Pmr,TurA和TurB的结合区域几乎相同;然而,使用突变体进行转录组学分析,该突变体在对数生长期和早期静止生长期都缺失了编码MvaT蛋白的基因,这清楚地表明它们的调控机制是不同的。实际上,在Pmr和其他两种蛋白质之间发现了显着的调节子差异。在静止期早期,与对数期相比,Pmr缺失会影响更多基因的转录,这表明Pmr在静止期早期更有效地改善了pCAR1对宿主适应性的影响。另外,TurA和TurB调节子的相似性暗示它们可能作为质粒转录响应的全局转录调节因子发挥互补作用。

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