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苯乙烯响应性StyS/StyR调控系统控制一种辅助苯乙酰辅酶A连接酶的表达:对苯乙烯上、下游降解途径快速代谢偶联的意义。

The styrene-responsive StyS/StyR regulation system controls expression of an auxiliary phenylacetyl-coenzyme A ligase: implications for rapid metabolic coupling of the styrene upper- and lower-degradative pathways.

作者信息

del Peso-Santos Teresa, Shingler Victoria, Perera Julián

机构信息

Department of Biochemistry and Molecular Biology, I, Facultad de Ciencias Biológicas, Universidad Complutense, 28040 Madrid, Spain.

出版信息

Mol Microbiol. 2008 Jul;69(2):317-30. doi: 10.1111/j.1365-2958.2008.06259.x.

Abstract

Pseudomonas sp. strain Y2 degrades styrene through oxidation to phenylacetic acid via the styABCD operon-encoded enzymes, whose expression is induced in response to styrene by the StyS/StyR two-component regulatory system. Further transformation of phenylacetic acid to tricarboxylic acid cycle intermediates is mediated by the enzymes of paa catabolic genes, whose expression is regulated by the PaaX repressor. The first step of this paa degradation pathway is catalysed by paaF-encoded phenylacetyl-coenzyme A ligases that produce phenylacetyl-coenzyme A. This metabolic intermediate, upon being bound by PaaX, inactivates PaaX-mediated repression of both the paa genes and the styABCD operon. Strain Y2 is unique in having three paaF genes located within two complete copies of the paa gene clusters. Expression of both paaF and paaF3 is controlled by the PaaX repressor. Here we use specific mutants in combination with in vivo and in vitro assays to demonstrate that paaF2, adjacent to the StyS/StyR regulatory genes, belongs to the StyR regulon and is not subject to repression by PaaX. We propose that this unexpected styrene-responsive regulatory strategy for the otherwise metabolically redundant PaaF2 auxiliary enzyme provides a system for rapid co-ordinate de-repression of the two sets of catabolic genes required for styrene degradation.

摘要

假单胞菌属菌株Y2通过由styABCD操纵子编码的酶将苯乙烯氧化为苯乙酸来降解苯乙烯,这些酶的表达由StyS/StyR双组分调节系统响应苯乙烯而诱导。苯乙酸进一步转化为三羧酸循环中间体由paa分解代谢基因的酶介导,其表达受PaaX阻遏物调节。该paa降解途径的第一步由paaF编码的苯乙酰辅酶A连接酶催化,产生苯乙酰辅酶A。这种代谢中间体一旦与PaaX结合,就会使PaaX介导的对paa基因和styABCD操纵子的阻遏失活。菌株Y2的独特之处在于,在paa基因簇的两个完整拷贝中有三个paaF基因。paaF和paaF3的表达均受PaaX阻遏物控制。在这里,我们使用特定突变体结合体内和体外试验来证明,与StyS/StyR调节基因相邻的paaF2属于StyR调节子,不受PaaX的阻遏。我们提出,这种针对原本代谢冗余的PaaF2辅助酶的意外的苯乙烯响应调节策略,为苯乙烯降解所需的两组分解代谢基因提供了一个快速协同去阻遏的系统。

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