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A Rhodococcus qsdA-Encoded Enzyme Defines a Novel Class of Large-Spectrum Quorum-Quenching Lactonases

机译:红球菌qsdA编码酶定义一类新的大光谱群体猝灭乳糖酶。

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A gene involved in N-acyl homoserine lactone (N-AHSL) degradation was identified by screening a genomic library of Rhodococcus erythropolis strain W2. This gene, named qsdA (for quorum-sensing signal degradation), encodes an N-AHSL lactonase unrelated to the two previously characterized N-AHSL-degrading enzymes, i.e., the lactonase AiiA and the amidohydrolase AiiD. QsdA is related to phosphotriesterases and constitutes the reference of a novel class of N-AHSL degradation enzymes. It confers the ability to inactivate N-AHSLs with an acyl chain ranging from C6 to C14, with or without substitution at carbon 3. Screening of a collection of 15 Rhodococcus strains and strains closely related to this genus clearly highlighted the relationship between the ability to degrade N-AHSLs and the presence of the qsdA gene in Rhodococcus. Bacteria harboring the qsdA gene interfere very efficiently with quorum-sensing-regulated functions, demonstrating that qsdA is a valuable tool for developing quorum-quenching procedures.
机译:通过筛选Rhodococcus erythropolis W2菌株的基因组文库,鉴定了一个涉及N-酰基高丝氨酸内酯(N-AHSL)降解的基因。该基因名为qsdA(用于群体感应信号降解),编码一种N-AHSL内酯酶,该酶与两种先前表征的N-AHSL降解酶,即内酯酶AiiA和酰胺水解酶AiiD不相关。 QsdA与磷酸三酯酶有关,构成了新型N-AHSL降解酶的参考。它赋予了从C6到C14的酰基链(在碳原子上有或没有取代)使N-AHSL失活的能力。对15个红球菌菌株和与该属密切相关的菌株的筛选清楚地突出了Rhodococcus会降解N-AHSLs和qsdA基因的存在。带有qsdA基因的细菌非常有效地干扰了群体感应调节功能,表明qsdA是开发群体猝灭程序的有价值的工具。

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