Yu Hao, Yao Yufeng, Liu Yang, Jiao Ruishen, Jiang Weihong, Zhao Guo-Ping
Laboratory of Molecular Microbiology, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 300 Fenglin Road, Shanghai 200032, People's Republic of China.
Arch Microbiol. 2007 Jul;188(1):89-96. doi: 10.1007/s00203-007-0228-7. Epub 2007 Mar 16.
Amycolatopsis, genus of a rare actinomycete, produces many clinically important antibiotics, such as rifamycin and vancomycin. Although GlnR of Amycolatopsis mediterranei is a direct activator of the glnA gene expression, the production of GlnR does not linearly correlate with the expression of glnA under different nitrogen conditions. Moreover, A. mediterranei GlnR apparently inhibits rifamycin biosynthesis in the absence of nitrate but is indispensable for the nitrate-stimulating effect for its production, which leads to the hyper-production of rifamycin. When glnR of A. mediterranei was introduced into its phylogenetically related organism, Streptomyces coelicolor, we found that GlnR widely participated in the host strain's secondary metabolism, resemblance to the phenotypes of a unique S. coelicolor glnR mutant, FS2. In contrast, absence or increment in copy number of the native S. coelicolor glnR did not result in a detectable pleiotrophic effect. We thus suggest that GlnR is a global regulator with a dual functional impact upon nitrogen metabolism and related antibiotics production.
拟无枝酸菌属是一种罕见的放线菌属,能产生许多具有重要临床意义的抗生素,如利福霉素和万古霉素。虽然地中海拟无枝酸菌的GlnR是谷氨酰胺合成酶基因表达的直接激活因子,但在不同氮条件下,GlnR的产生与谷氨酰胺合成酶的表达并非呈线性相关。此外,在地中海拟无枝酸菌中,GlnR在缺乏硝酸盐的情况下明显抑制利福霉素的生物合成,但对于硝酸盐刺激其产生却是不可或缺的,这导致了利福霉素的过量产生。当地中海拟无枝酸菌的glnR被导入其系统发育相关的生物体天蓝色链霉菌中时,我们发现GlnR广泛参与宿主菌株的次级代谢,这与独特的天蓝色链霉菌glnR突变体FS2的表型相似。相比之下,天然天蓝色链霉菌glnR的缺失或拷贝数增加并未导致可检测到的多效性效应。因此,我们认为GlnR是一种对氮代谢和相关抗生素产生具有双重功能影响的全局调节因子。