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首页> 外文期刊>Journal of bacteriology >Divergent Structure and Regulatory Mechanism of Proline Catabolic Systems: Characterization of the putAP Proline Catabolic Operon of Pseudomonas aeruginosa PAO1 and Its Regulation by PruR, an AraC/XylS Family Protein
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Divergent Structure and Regulatory Mechanism of Proline Catabolic Systems: Characterization of the putAP Proline Catabolic Operon of Pseudomonas aeruginosa PAO1 and Its Regulation by PruR, an AraC/XylS Family Protein

机译:脯氨酸分解代谢系统的结构和调控机制:铜绿假单胞菌PAO1的putAP脯氨酸分解代谢操纵子的表征及其受AraC / XylS家族蛋白PruR的调节。

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Pseudomonas aeruginosa PAO1 utilizes proline as the sole source of carbon and nitrogen via a bifunctional enzyme (the putA gene product) that has both proline dehydrogenase (EC 1.5.99.8) and pyrroline 5-carboxylate dehydrogenase (EC 1.5.1.12) activities. We characterized the pruR-putAP loci encoding the proline catabolic system of this strain. In contrast to the putA and putP (encoding proline permease) genes of other gram- negative bacteria, which are located at divergent or separate loci, Northern blotting demonstrated that the two genes form an operon in strain PAO1. While the phylogenetic lineage of the PutP protein of strain PAO1 was related to that of the origin (80% identity to the P. putida counterpart), PutA of PAO1 (PutAPAO) was rather distantly related (47% identity) to the P. putida counterpart. Moreover, unlike the PutA proteins of P. putida and enteric bacteria, PutAPAO appeared to lack a regulatory function. Upstream of the putAP operon, the divergent PA0781 gene specified a hypothetical outer membrane protein with a molecular weight of 74,202. This gene appeared to be dispensable for proline utilization as indicated by the normal growth of a knockout mutant of PA0781 on medium containing proline. The pruR (proline utilization regulator) gene immediately upstream of PA0781 encoded a transcriptional activator of the AraC/XylS protein family and mediated the proline-responsive expression of putAP. Primer extension studies identified a PruR-dependent promoter responsive to proline in the 5′-flanking region of putA. Thus, the proline utilization system of P. aeruginosa differs from that of P. putida with respect to putA structure, the organization of the putAP genes, and the regulatory mechanism of putA expression.
机译:铜绿假单胞菌 PAO1通过双功能酶( putA 基因产物)利用脯氨酸作为碳和氮的唯一来源,该酶同时具有脯氨酸脱氢酶(EC 1.5.99.8)和吡咯啉5-羧酸盐脱氢酶(EC 1.5.1.12)的活性。我们表征了 pruR-putAP 基因座,该基因编码该菌株的脯氨酸分解代谢系统。与其他革兰氏阴性细菌的 putA putP (编码脯氨酸通透酶)基因位于发散或分离的基因座相反,Northern blotting显示这两个基因在菌株PAO1中形成操纵子。尽管PAO1菌株PutP蛋白的系统谱系与起源相关(与 P。putida 对应物具有80%的同一性),但PAO1的PutA(PutA PAO )与 P有相当远的关联(同一性为47%)。 putida 对应对象。此外,与 P的PutA蛋白不同。 Putida 和肠道细菌PutA PAO 似乎缺乏调节功能。在 putAP 操纵子的上游,发散的PA0781基因指定了一种假设的外膜蛋白,分子量为74,202。如PA0781的敲除突变体在含脯氨酸的培养基上的正常生长所表明的,该基因似乎对于脯氨酸的利用是可有可无的。紧靠PA0781上游的 pruR (脯氨酸利用调节剂)基因编码AraC / XylS蛋白家族的转录激活因子,并介导 putAP的脯氨酸响应性表达。引物延伸研究在 putA的5'侧翼区域发现了对脯氨酸有反应的PruR依赖启动子。因此, P的脯氨酸利用系统。铜绿不同于 P。 putida putA 结构, putAP 基因的组织以及 putA 表达调控机制方面的研究。

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