Parke D
Department of Biology, Yale University, New Haven, Connecticut 06520-8103, USA.
J Bacteriol. 1996 Jan;178(1):266-72. doi: 10.1128/jb.178.1.266-272.1996.
Previous work demonstrated that catabolism of the phenolic compounds p-hydroxybenzoate and protocatechuate via the beta-ketoadipate pathway in Agrobacterium tumefaciens is mediated by a regulatory gene, pcaQ, that acts in trans to elicit expression of many of the enzymes encoded by the pca genes. There was evidence that five pca structural genes are organized in a polycistronic operon transcribed in the order pcaDCHGB. The pcaQ gene is upstream of this operon. The activator encoded by pcaQ was novel in having the metabolite beta-carboxy-cis,cis-muconate as a coinducer. This communication reports the nucleotide sequence of pcaQ and identifies its deduced polypeptide product as a member of the LysR family of regulatory molecules. PcaQ has a calculated molecular weight of 33,546, which is consistent with the size of LysR relatives. Like many other LysR members, PcaQ serves as an activator at the level of transcription, it has a conserved amino-terminal domain, and its gene is transcribed divergently from the operon that it regulates and is subject to negative autoregulation. Studies of coinducer specificity identified an unstable pathway metabolite, gamma-carboxymuconolactone, as a second coinducer. Analysis of expression from a pcaD::lacZ promoter probe plasmid revealed that PcaQ and the coinducer exert their effect on a 133-nucleotide region upstream of pcaD. The nucleotide sequence of this region in a mutant strain constitutive for enzymes encoded by the pcaDCHGB operon identified nucleotides likely to be involved in the pcaDCHGB promoter and substantiated the inclusion of five pca structural genes in the operon.
先前的研究表明,根癌土壤杆菌中对羟基苯甲酸和原儿茶酸这两种酚类化合物通过β-酮己二酸途径进行分解代谢是由一个调控基因pcaQ介导的,该基因通过反式作用引发许多由pca基因编码的酶的表达。有证据表明,五个pca结构基因以多顺反子操纵子的形式排列,转录顺序为pcaDCHGB。pcaQ基因位于该操纵子的上游。由pcaQ编码的激活剂的独特之处在于其代谢物β-羧基-顺,顺-粘康酸作为共诱导剂。本通讯报道了pcaQ的核苷酸序列,并确定其推导的多肽产物为调控分子LysR家族的成员。PcaQ的计算分子量为33546,这与LysR家族成员的大小一致。与许多其他LysR家族成员一样,PcaQ在转录水平上作为激活剂发挥作用,它有一个保守的氨基末端结构域,其基因与它所调控的操纵子反向转录,并受到负自调控。对共诱导剂特异性的研究确定了一种不稳定的途径代谢物γ-羧基粘康酸内酯作为第二种共诱导剂。对pcaD::lacZ启动子探针质粒表达的分析表明,PcaQ和共诱导剂对pcaD上游133个核苷酸区域发挥作用。在一个对由pcaDCHGB操纵子编码的酶组成型表达的突变菌株中,该区域的核苷酸序列确定了可能参与pcaDCHGB启动子的核苷酸,并证实了该操纵子中包含五个pca结构基因。