Coco W M, Rothmel R K, Henikoff S, Chakrabarty A M
Department of Microbiology and Immunology, University of Illinois, Chicago 60612.
J Bacteriol. 1993 Jan;175(2):417-27. doi: 10.1128/jb.175.2.417-427.1993.
The 3-chlorocatechol operon clcABD is central to the biodegradative pathway of 3-chlorobenzoate. The clcR regulatory gene, which activates the clcABD operon, was cloned from the region immediately upstream of the operon and was shown to complement an insertion mutation for growth on 3-chlorobenzoate. ClcR activated the clcA promoter, which controls expression of the clcABD operon, in trans by 14-fold in an in vivo promoter probe assay in Pseudomonas putida when cells were incubated with 15 mM 3-chlorobenzoic acid. Specific binding of ClcR to the clcR-clcA intergenic promoter region was observed in a gel shift assay. Nucleotide sequence analysis of the clcR gene predicts a polypeptide of 32.5 kDa, which was confirmed by using specific in vivo 35S labeling of the protein from a T7 promoter-controlled ATG fusion construct. ClcR shares high sequence identity with the LysR family of bacterial regulator proteins and has especially high homology to a subgroup of the family consisting of TcbR (57% amino acid sequence identity), TfdS, CatR, and CatM. ClcR was shown to autoregulate its own production in trans to 35% of unrepressed levels but partially relieved this autorepression under conditions that induced transcription at the clcA promoter. Several considerations indicate that the clcR-clcABD locus is most similar to the tcbR-tcbCDEF regulon.
3-氯儿茶酚操纵子clcABD是3-氯苯甲酸生物降解途径的核心。激活clcABD操纵子的clcR调控基因是从该操纵子紧邻的上游区域克隆而来的,并显示其能够互补一个插入突变,使细胞在以3-氯苯甲酸为唯一碳源的培养基上生长。在恶臭假单胞菌的体内启动子探针试验中,当细胞与15 mM 3-氯苯甲酸一起孵育时,ClcR以反式作用激活控制clcABD操纵子表达的clcA启动子,激活倍数为14倍。凝胶迁移试验表明ClcR能特异性结合clcR-clcA基因间启动子区域。clcR基因的核苷酸序列分析预测其编码一个32.5 kDa的多肽,通过对来自T7启动子控制的ATG融合构建体的蛋白质进行特异性体内35S标记得以证实。ClcR与细菌调节蛋白的LysR家族具有高度的序列同一性,并且与由TcbR(氨基酸序列同一性为57%)、TfdS、CatR和CatM组成的该家族亚组具有特别高的同源性。研究表明,ClcR能以反式作用自动调节自身的产生,使其表达水平降至未受抑制水平的35%,但在诱导clcA启动子转录的条件下,这种自动抑制作用会部分解除。多项研究表明,clcR-clcABD基因座与tcbR-tcbCDEF操纵子最为相似。