Santos-Beneit Fernando, Rodríguez-García Antonio, Sola-Landa Alberto, Martín Juan F
Instituto de Biotecnología de León, INBIOTEC, Parque Científico de León, Avenue. Real, 1, 24006, León, Spain.
Mol Microbiol. 2009 Apr;72(1):53-68. doi: 10.1111/j.1365-2958.2009.06624.x. Epub 2009 Feb 11.
The regulatory proteins AfsR and PhoP control expression of the biosynthesis of actinorhodin and undecylprodigiosin in Streptomyces coelicolor. Electrophoretic mobility shift assays showed that PhoP(DBD) does not bind directly to the actII-ORF4, redD and atrA promoters, but it binds to the afsS promoter, in a region overlapping with the AfsR operator. DNase I footprinting studies revealed a PhoP protected region of 26 nt (PHO box; two direct repeats of 11 nt) that overlaps with the AfsR binding sequence. Binding experiments indicated a competition between AfsR and PhoP; increasing concentrations of PhoP(DBD) resulted in the disappearance of the AfsR-DNA complex. Expression studies using the reporter luxAB gene coupled to afsS promoter showed that PhoP downregulates afsS expression probably by a competition with the AfsR activator. Interestingly, AfsR binds to other PhoP-regulated promoters including those of pstS (a component of the phosphate transport system) and phoRP (encoding the two component system itself). Analysis of the AfsR-protected sequences in each of these promoters allowed us to distinguish the AfsR binding sequence from the overlapping PHO box. The reciprocal regulation of the phoRP promoter by AfsR and of afsS by PhoP suggests a fine interplay of these regulators on the control of secondary metabolism.
调控蛋白AfsR和PhoP控制天蓝色链霉菌中放线紫红素和十一烷基灵菌红素生物合成的表达。电泳迁移率变动分析表明,PhoP(DBD)不直接与actII-ORF4、redD和atrA启动子结合,但它与afsS启动子结合,结合区域与AfsR操纵子重叠。DNA酶I足迹研究揭示了一个26个核苷酸的PhoP保护区域(PHO框;两个11个核苷酸的直接重复序列),该区域与AfsR结合序列重叠。结合实验表明AfsR和PhoP之间存在竞争;PhoP(DBD)浓度增加导致AfsR-DNA复合物消失。使用与afsS启动子偶联的报告基因luxAB进行的表达研究表明,PhoP可能通过与AfsR激活剂竞争来下调afsS的表达。有趣的是,AfsR与其他PhoP调控的启动子结合,包括pstS(磷酸盐转运系统的一个组分)和phoRP(编码双组分系统本身)的启动子。对这些启动子中每个启动子的AfsR保护序列进行分析,使我们能够区分AfsR结合序列和重叠的PHO框。AfsR对phoRP启动子的反向调控以及PhoP对afsS的反向调控表明,这些调控因子在次级代谢控制中存在精细的相互作用。