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The PhoP transcription factor negatively regulates avermectin biosynthesis in Streptomyces avermitilis

机译:PhoP转录因子负调控阿维链霉菌中阿维菌素的生物合成

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摘要

Bacteria sense and respond to the stress of phosphate limitation, anticipating Pi deletion/starvation via the two-component PhoR-PhoP system. The role of the response regulator PhoP in primary metabolism and avermectin biosynthesis in Streptomyces avermitilis was investigated. In response to phosphate starvation, S. avermitilis PhoP, like Streptomyces coelicolor and Streptomyces lividans PhoP, activates the expression of phoRP, phoU, and pstS by binding to the PHO boxes in their promoter regions. Avermectin biosynthesis was significantly increased in Delta phoP deletion mutants. Electrophoretic mobility gel shift assay (EMSA) and DNase I footprinting assays showed that PhoP can bind to a PHO box formed by two direct repeat units of 11 nucleotides located downstream of the transcriptional start site of aveR. By negatively regulating the transcription of aveR, PhoP directly affects avermectin biosynthesis in S. avermitilis. PhoP indirectly affects melanogenesis on Casaminoacids Minimal Medium (MMC) lacking supplemental phosphate. Nitrogen metabolism and some key genes involved in morphological differentiation and antibiotic production in S. avermitilis are also under the control of PhoP.
机译:细菌感知并响应磷酸盐限制的压力,通过两组分PhoR-PhoP系统预期Pi缺失/饥饿。研究了反应调节剂PhoP在阿维链霉菌初级代谢和阿维菌素生物合成中的作用。响应于磷酸盐饥饿,阿维链霉菌PhoP,如链霉菌和淡链链霉菌PhoP,通过结合在其启动子区域中的PHO盒来激活phoRP,phoU和pstS的表达。阿维菌素的生物合成在Delta phoP缺失突变体中显着增加。电泳迁移率凝胶迁移测定(EMSA)和DNase I足迹测定表明,PhoP可以结合由位于aveR转录起始位点下游的11个核苷酸的两个直接重复单元形成的PHO盒。通过负调控aveR的转录,PhoP直接影响阿维链霉菌中阿维菌素的生物合成。 PhoP间接影响缺乏补充磷酸盐的酪蛋白氨基酸最小培养基(MMC)的黑色素生成。氮代谢和阿维链霉菌形态分化和抗生素生产中涉及的一些关键基因也在PhoP的控制之下。

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