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转座子Tn4371的bph基因簇的组织,该基因簇编码用于降解联苯和4-氯联苯化合物的酶。

Organisation of the bph gene cluster of transposon Tn4371, encoding enzymes for the degradation of biphenyl and 4-chlorobiphenyl compounds.

作者信息

Merlin C, Springael D, Mergeay M, Toussaint A

机构信息

Laboratoire de Microbiologie, Université Joseph Fourier, Grenoble, France.

出版信息

Mol Gen Genet. 1997 Jan 27;253(4):499-506. doi: 10.1007/s004380050349.

Abstract

Tn4371 is a 55 kb transposon which encodes enzymes for the degradation of biphenyl and 4-chlorobiphenyl compounds into benzoate and 4-chlorobenzoate derivatives. We constructed a cosmid library of Tn4371 DNA. The bph genes involved in biphenyl/4-chlorobiphenyl degradation were found to be clustered in the middle of the transposon. Sequencing revealed an organisation of the bph genes similar to that previously found in Pseudomonas sp. KKS102, i.e. the bphEGF genes are located upstream of bphA1A2A3 and bphA4 is separated from bphA1A2A3 by bphBCD. Consensus sequences for sigma54-associated RNA polymerase were found upstream of bphA1 and bphEGF. Plasmid RP4::Tn4371 was transferred into a mutant of Alcaligenes eutrophus H16 lacking sigma54. In contrast to wild-type H16 exconjugants, the sigma54 mutant exconjugants could not grow on biphenyl, indicating the dependence of Tn4371 bph gene expression on sigma54. The Tn4371-encoded bph pathway was activated when biphenyl and various biphenyl-like compounds were present in the growth medium. Preliminary observations indicate the presence of a region outside the catabolic genes downstream of bphA4 which is involved in mediating at least the basal expression of BphC.

摘要

Tn4371是一个55千碱基对的转座子,它编码将联苯和4-氯联苯化合物降解为苯甲酸酯和4-氯苯甲酸酯衍生物的酶。我们构建了Tn4371 DNA的黏粒文库。发现参与联苯/4-氯联苯降解的bph基因聚集在转座子的中间。测序揭示了bph基因的一种组织形式,类似于先前在假单胞菌属KKS102中发现的,即bphEGF基因位于bphA1A2A3的上游,且bphA4通过bphBCD与bphA1A2A3分开。在bphA1和bphEGF的上游发现了与σ54相关的RNA聚合酶的共有序列。质粒RP4::Tn4371被转入缺乏σ54的嗜碱假单胞菌H16的一个突变体中。与野生型H16接合子不同,σ54突变体接合子不能在联苯上生长,这表明Tn4371 bph基因的表达依赖于σ54。当生长培养基中存在联苯和各种联苯样化合物时,Tn4371编码的bph途径被激活。初步观察表明,在bphA4下游的分解代谢基因之外存在一个区域,该区域至少参与介导BphC的基础表达。

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