首页> 美国卫生研究院文献>Journal of Bacteriology >Characterization of a Spontaneously Occurring Mutant of the TOL20 Plasmid in Pseudomonas putida MT20: Possible Regulatory Implications
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Characterization of a Spontaneously Occurring Mutant of the TOL20 Plasmid in Pseudomonas putida MT20: Possible Regulatory Implications

机译:恶性假单胞菌MT20中TOL20质粒的自发突变体的表征:可能的监管含义。

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摘要

Pseudomonas putida MT20 carries a plasmid (TOL20) that codes for the enzymes responsible for the catabolism of toluene, m- and p-xylene to benzoate, and m- and p-toluate, respectively, followed by meta cleavage of the aromatic ring. Growth on 5 mM benzoate selects very strongly for (i) strains that have been cured of the plasmid and (ii) strains with an intermediate growth pattern (the B3 phenotype) that retain the ability to grow on toluene, m-xylene, and benzoate but are unable to grow on m-toluate. Both types of strains were selected because they are no longer able to oxidize benzoate by the plasmid pathway but instead use an alternative route, the ortho or β-ketoadipate pathway, which is chromosomally coded and supports faster growth. Evidence that one strain with the B3 phenotype, MT20-B3, has a regulatory mutation that prevents induction of the meta-pathway enzymes by benzoate and m-toluate, but which enables them to be induced by toluene and m-xylene, is presented. The plasmid in this strain, as in most of the others with the same phenotype, is nonconjugative. Analysis of MT20-B3, together with revertants of it and other noninducible mutants, has led to a model for the regulation of the plasmid-coded enzymes in MT20, in which it is proposed that the early enzymes for degradation of m-toluate and benzoate are positively controlled by two regulator molecules, one of which interacts with toluene and m-xylene as inducers and the other of which interacts with benzoate and m-toluate. It is argued that MT20-B3 and strains with a similar phenotype arose as a result of a deletion of the gene coding for the second regulator molecule.
机译:恶臭假单胞菌MT20带有一个质粒(TOL20),该质粒编码负责将甲苯,间二甲苯和对二甲苯分解为苯甲酸酯,间甲苯甲酸和对甲苯甲酸分解代谢的酶,然后对芳环进行裂解。在(5)mM苯甲酸酯上的生长对于(i)已被质粒固化的菌株和(ii)具有中间生长模式(B3表型)并保留在甲苯,间二甲苯和苯甲酸酯上生长的能力的菌株具有非常强的选择力但无法在间甲苯磺酸盐上生长。选择这两种类型的菌株是因为它们不再能够通过质粒途径氧化苯甲酸酯,而是使用替代途径,即染色体编码的邻位或β-酮己二酸酯途径,并支持更快的生长。有证据表明一种具有B3表型的菌株MT20-B3具有调节性突变,该突变阻止苯甲酸酯和间甲苯酸酯诱导元途径酶,但使它们能够被甲苯和间二甲苯诱导。像大多数其他具有相同表型的菌株一样,该质粒是非结合的。对MT20-B3及其反向突变体和其他不可诱导突变体的分析,导致了MT20中质粒编码酶的调控模型,其中提出了用于降解间甲苯酸酯和苯甲酸酯的早期酶。由两个调节剂分子正控制,其中一个与甲苯和间二甲苯作为诱导剂相互作用,另一个与苯甲酸酯和间甲苯酸酯相互作用。有人认为,由于缺失编码第二个调节分子的基因,MT20-B3和具有相似表型的菌株出现了。

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