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磷光发光杆菌生物发光细菌中lux基因和核黄素基因的共调控

Coregulation of lux genes and riboflavin genes in bioluminescent bacteria of Photobacterium phosphoreum.

作者信息

Sung Nack-Do, Lee Chan Yong

机构信息

Department of Agricultural Chemistry, Chungnam National University, Daejeon 305-764, Korea.

出版信息

J Microbiol. 2004 Sep;42(3):194-9.

Abstract

Investigation of the expression of the riboflavin (rib) genes, which are found immediately downstream of luxG in the lux operon in Photobacterium phosphoreum, provides more information relevant to the evolution of bioluminescence, as well as to the regulation of supply of flavin substrate for bacterial bioluminescence reactions. In order to answer the question of whether or not the transcriptions of lux and rib genes are integrated, a transcriptional termination assay was performed with P. phosphoreum DNA, containing the possible stem-loop structures, located in the intergenic region of luxF and luxE (OmegaA), of luxG and ribE (OmegaB), and downstream of ribA (OmegaC). The expression of the CAT (Chloramphenicol Acetyl Transferase) reporter gene was remarkably decreased upon the insertion of the stem-loop structure (OmegaC) into the strong lux promoter and the reporter gene. However, the insertion of the structure (OmegaB) into the intergenic region of the lux and the rib genes caused no significant change in expression from the CAT gene. In addition, the single stranded DNA in the same region was protected by the P. phosphoreum mRNA from the S1 nuclease protection assay. These results suggest that lux genes and rib genes are part of the same operon in P. phosphoreum.

摘要

对磷光杆菌中lux操纵子中位于luxG下游紧邻位置的核黄素(rib)基因表达情况进行研究,可为生物发光的进化以及细菌生物发光反应中黄素底物供应的调控提供更多相关信息。为了回答lux和rib基因的转录是否整合这一问题,利用含有可能形成茎环结构的磷光杆菌DNA进行了转录终止试验,这些茎环结构分别位于luxF和luxE的基因间隔区(OmegaA)、luxG和ribE的基因间隔区(OmegaB)以及ribA下游(OmegaC)。将茎环结构(OmegaC)插入到强lux启动子和报告基因中后,氯霉素乙酰转移酶(CAT)报告基因的表达显著下降。然而,将该结构(OmegaB)插入lux和rib基因的基因间隔区后,CAT基因的表达没有显著变化。此外,来自S1核酸酶保护试验的结果表明,同一区域的单链DNA受到磷光杆菌mRNA的保护。这些结果表明,lux基因和rib基因在磷光杆菌中属于同一个操纵子。

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