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首页> 外文期刊>Archives of microbiology >TfdD(II), one of the two chloromuconate cycloisomerases of Ralstonia eutropha JMP134 (pJP4), cannot efficiently convert 2-chloro-cis,cis-muconate to trans-dienelactone to allow growth on 3-chlorobenzoate
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TfdD(II), one of the two chloromuconate cycloisomerases of Ralstonia eutropha JMP134 (pJP4), cannot efficiently convert 2-chloro-cis,cis-muconate to trans-dienelactone to allow growth on 3-chlorobenzoate

机译:TfdD(II),富营养小球藻JMP134(pJP4)的两个氯粘康酸酯环异构酶之一,不能有效地将2-氯顺式,粘康酸酯转化为反式二烯内酯,从而可以在3-氯苯甲酸酯上生长

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Ralstonia eutropha JMP134 (pJP4) harbors two functional gene clusters for the degradation of chlorocatechols, i.e. tfdCDEF (in short: tfd(I)) and tfdD(II)C(II)E(II)F(II) (in short: tfd(II)), which are both present on the catabolic plasmid pJP4. In this study, we compared the function of both gene clusters for degradation of chlorocatechols by constructing isolated and hybrid tfd(I)-tfd(II) clusters on plasmids in R. eutropha, by activity assays of Tfd enzymes, and by HPLC/MS of individual enzymatic catalytic steps in chlorocatechol conversion. R. eutropha containing the tfd(II) cluster alone or hybrid tfd-clusters with tfdD(II) as sole gene for chloromuconate cycloisomerase were impaired in growth on 3-chlorobenzoate, in contrast to R. eutropha harboring the complete tfd(I) cluster. Enzyme activities for TfdD(II) and for TfdE(II) were very low in R. eutropha when induced with 3-chlorobenzoate. By contrast, a relatively high enzyme activity was found for TfdF(II). Spectral conversion assays with extracts from R. eutropha strains expressing tfdD(II) all showed accumulation of a compound with a similar UV spectrum as 2-chloro-cis,cis-muconate from 3-chlorocatechol. HPLC analysis of in vitro assays in which each individual step in 3-chlorocatechol conversion was reproduced by sequentially adding cell extracts of an Escherichia coli expressing one Tfd enzyme only demonstrated that TfdD(II) was unable to cause conversion of 2-chloro-cis,cis-muconate. No accumulation of intermediates was observed with 4-chlorocatechol. From these results, we conclude that at least TfdD(II) is a bottleneck in conversion of 3-chlorocatechol and, therefore, in efficient metabolism of 3-chlorobenzoate. This study showed the subtle functional and expression differences between similar enzymes of the tfd-encoded pathway and demonstrated that extreme care has to be taken when inferring functionality from sequence data alone. [References: 41]
机译:Ralstonia eutropha JMP134(pJP4)具有两个降解氯邻苯二酚的功能基因簇,即tfdCDEF(简称:tfd(I))和tfdD(II)C(II)E(II)F(II)(简称:tfd (II)),它们都存在于分解代谢质粒pJP4上。在这项研究中,我们通过在富营养罗汉果中的质粒上构建分离的和杂合的tfd(I)-tfd(II)簇,通过Tfd酶的活性测定以及HPLC / MS,比较了这两个基因簇对氯邻苯二酚降解的功能。儿茶酚转化中各个酶催化步骤的比较与单独完整的tfd(I)簇相反的富营养的R. eutropha则只含有tfd(II)簇或带有tfdD(II)的杂种tfd-clusters在3-氯苯甲酸酯上的生长受到损害,而tfd(II)的唯一tfdD(II)簇是氯粘康酸酯环异构酶的唯一基因。 。当用3-氯苯甲酸酯诱导时,富营养罗非鱼中TfdD(II)和TfdE(II)的酶活性非常低。相比之下,发现TfdF(II)的酶活性较高。用表达tfdD(II)的富营养罗汉果菌株的提取物进行的光谱转换测定均显示出具有与来自3-氯邻苯二酚的2-氯-顺式,顺式-粘康酸酯相似的UV光谱的化合物的积累。 HPLC分析中的体外分析方法(其中通过依次添加表达一种Tfd酶的大肠杆菌的细胞提取物来复制3-氯邻苯二酚的每个步骤)仅表明TfdD(II)无法引起2-氯-顺式转化,顺黏液。用4-氯儿茶酚未观察到中间体的积累。根据这些结果,我们得出结论,至少TfdD(II)是3-氯邻苯二酚转化的瓶颈,因此是3-氯苯甲酸酯有效代谢的瓶颈。这项研究表明,tfd编码途径的相似酶之间的细微功能和表达差异,并证明仅从序列数据推断功能时必须格外小心。 [参考:41]

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