Malke H, Ferretti J J
J Basic Microbiol. 1985;25(6):393-400. doi: 10.1002/jobm.3620250614.
The streptococcal erythromycin resistance (Emr) plasmid pSM7 (6.4 kb) and the E. coli vector pACYC184 (4.0 kb) were fused at their single EcoRI sites to form the bifunctional chimeric plasmid pSM7184 (10.4 kb) in which the Emr determinant was placed under control of the chloramphenicol acetyl transferase (cat) promoter of pACYC184. In the sense orientation (orientation I) of pSM7, the cat promoter directed expression of Emr in the E. coli host strains 294 and DB11 more efficiently than did the indigenous transcription signals of pSM7, which were functional in the opposite orientation II. In Streptococcus sanguis (Challis), the level of Emr was independent of the orientation of pSM7 in pACYC184, showing that the cat promoter was not recognized in the gram-positive host. The growth of E. coli (pSM7184I) in a defined medium containing glycerol as carbon source, or containing glucose plus extraneous cyclic 3'-5' adenosine monophosphate (cAMP) led to an Emr level which was 15-30 times higher than that of cultures grown on glucose. These results showed that under control of the cat promoter, Emr is subject to cAMP-mediated catabolite repression and provided conclusive evidence that the enhancement of Emr expression in E. coli carrying pSM7184I is controlled at the transcriptional level. Besides enabling us to determine the orientation of transcription of the Emr gene in pSM7 and related vectors, this work also made available new bifunctional cloning vehicles able to replicate in both E. coli and S. sanguis.
将链球菌红霉素抗性(Emr)质粒pSM7(6.4 kb)和大肠杆菌载体pACYC184(4.0 kb)在它们的单一EcoRI位点处融合,形成双功能嵌合质粒pSM7184(10.4 kb),其中Emr决定簇置于pACYC184的氯霉素乙酰转移酶(cat)启动子的控制之下。在pSM7的正义方向(方向I)上,cat启动子在大肠杆菌宿主菌株294和DB11中指导Emr的表达,比pSM7的天然转录信号更有效,而天然转录信号在相反的方向II上起作用。在血链球菌(Challis)中,Emr的水平与pACYC184中pSM7的方向无关,表明cat启动子在革兰氏阳性宿主中不被识别。大肠杆菌(pSM7184I)在含有甘油作为碳源或含有葡萄糖加外源环3'-5'单磷酸腺苷(cAMP)的限定培养基中生长,导致Emr水平比在葡萄糖上生长的培养物高15 - 30倍。这些结果表明,在cat启动子的控制下,Emr受到cAMP介导的分解代谢物阻遏作用,并且提供了确凿的证据,即携带pSM7184I的大肠杆菌中Emr表达的增强是在转录水平上受到控制的。除了使我们能够确定pSM7和相关载体中Emr基因的转录方向外,这项工作还提供了能够在大肠杆菌和血链球菌中复制的新型双功能克隆载体。