Keil H, Keil S, Pickup R W, Williams P A
J Bacteriol. 1985 Nov;164(2):887-95. doi: 10.1128/jb.164.2.887-895.1985.
Pseudomonas putida MT53 contains a TOL plasmid, pWW53, that encodes toluene-xylene catabolism. pWW53 is nonconjugative, is about 105 to 110 kilobase pairs (kbp) in size, and differs significantly in its restriction endonuclease digestion pattern and incompatibility group from the archetypal TOL plasmid pWW0. An RP4::pWW53 cointegrate plasmid, pWW53-4, containing about 35 kbp of pWW53 DNA, including the entire catabolic pathway genes, was formed, and a restriction map for KpnI, HindIII, and BamHI was derived. The entire regulated meta pathway genes for the catabolism of m-toluate were cloned into pKT230 from pWW53 on a 17.5-kbp HindIII fragment. The recombinant plasmid supported growth on m-toluate when mobilized into plasmid-free P. putida PaW130. A restriction map of the insert for 10 restriction enzymes was derived, and the locations of xylD, xylL, xylE, xylG, and xylF were determined by subcloning and assaying for their gene products in both Escherichia coli and P. putida hosts. Good induction of the enzymes by m-toluate and m-methylbenzyl alcohol but not by m-xylene was measured in P. putida, but little or no regulation was found in E. coli. The restriction map and the gene order showed strong similarities with published maps of the DNA encoding both the entire meta pathway operon (xylDLEGFJIH) and the regulatory genes xylS and xylR on the archetype TOL plasmid pWW0, suggesting a high degree of conservation in DNA structure for the catabolic operon on the two different plasmids.
恶臭假单胞菌MT53含有一个编码甲苯 - 二甲苯分解代谢的TOL质粒pWW53。pWW53是非接合性的,大小约为105至110千碱基对(kbp),其限制性内切酶消化模式和不相容群与原型TOL质粒pWW0有显著差异。构建了一个包含约35 kbp pWW53 DNA(包括整个分解代谢途径基因)的RP4::pWW53共整合质粒pWW53 - 4,并获得了KpnI、HindIII和BamHI的限制性图谱。将间甲苯酸分解代谢的整个调控间位途径基因从pWW53克隆到pKT230上的一个17.5 - kbp HindIII片段中。当该重组质粒导入无质粒的恶臭假单胞菌PaW130时,支持其在间甲苯酸上生长。获得了插入片段的10种限制性酶的限制性图谱,并通过亚克隆以及在大肠杆菌和恶臭假单胞菌宿主中检测其基因产物来确定xylD、xylL、xylE、xylG和xylF的位置。在恶臭假单胞菌中检测到间甲苯酸和间甲基苄醇能很好地诱导这些酶,但间二甲苯不能,而在大肠杆菌中几乎没有发现调控现象。该限制性图谱和基因顺序与已发表的原型TOL质粒pWW0上编码整个间位途径操纵子(xylDLEGFJIH)和调控基因xylS和xylR的DNA图谱有很强的相似性,表明两种不同质粒上分解代谢操纵子的DNA结构具有高度保守性。