Santos-Beneit Fernando, Rodríguez-García Antonio, Franco-Domínguez Etelvina, Martín Juan F
Instituto de Biotecnología de León, INBIOTEC, Parque Científico de León, Av. Real, 1, 24006 León, Spain.
área de Microbiología, Fac. CC. Biológicas y Ambientales, Universidad de León, Campus de Vegazana, s/n, 24071 León, Spain.
Microbiology (Reading). 2008 Aug;154(Pt 8):2356-2370. doi: 10.1099/mic.0.2008/019539-0.
The transport of inorganic phosphate (P(i)) is essential for the growth of all organisms. The metabolism of soil-dwelling Streptomyces species, and their ability to produce antibiotics and other secondary metabolites, are strongly influenced by the availability of phosphate. The transcriptional regulation of the SCO4138 and SCO1845 genes of Streptomyces coelicolor was studied. These genes encode the two putative low-affinity P(i) transporters PitH1 and PitH2, respectively. Expression of these genes and that of the high-affinity transport system pstSCAB follows a sequential pattern in response to phosphate deprivation, as shown by coupling their promoters to a luciferase reporter gene. Expression of pitH2, but not that of pap-pitH1 (a bicistronic transcript), is dependent upon the response regulator PhoP. PhoP binds to specific sequences consisting of direct repeats of 11 nt in the promoter of pitH2, but does not bind to the pap-pitH1 promoter, which lacks these direct repeats for PhoP recognition. The transcription start point of the pitH2 promoter was identified by primer extension analyses, and the structure of the regulatory sequences in the PhoP-protected DNA region was established. It consists of four central direct repeats flanked by two other less conserved repeats. A model for PhoP regulation of this promoter is proposed based on the four promoter DNA-PhoP complexes detected by electrophoretic mobility shift assays and footprinting studies.
无机磷酸盐(P(i))的转运对所有生物体的生长至关重要。土壤中链霉菌的代谢及其产生抗生素和其他次级代谢产物的能力,受到磷酸盐可用性的强烈影响。研究了天蓝色链霉菌SCO4138和SCO1845基因的转录调控。这些基因分别编码两个假定的低亲和力P(i)转运蛋白PitH1和PitH2。如将它们的启动子与荧光素酶报告基因偶联所示,这些基因以及高亲和力转运系统pstSCAB的表达在磷酸盐缺乏时呈现出一种顺序模式。pitH2的表达,而非pap-pitH1(一种双顺反子转录本)的表达,依赖于应答调节因子PhoP。PhoP与pitH2启动子中由11个核苷酸的直接重复序列组成的特定序列结合,但不与缺乏PhoP识别的这些直接重复序列的pap-pitH1启动子结合。通过引物延伸分析确定了pitH2启动子的转录起始点,并确定了PhoP保护的DNA区域中调控序列的结构。它由四个中心直接重复序列组成,两侧是另外两个不太保守的重复序列。基于电泳迁移率变动分析和足迹研究检测到的四种启动子DNA-PhoP复合物,提出了PhoP对该启动子调控的模型。