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首页> 外文期刊>Applied and Environmental Microbiology >HylA, an Alternative Hydrolase for Initiation of Catabolism of the Phenylurea Herbicide Linuron in Variovorax sp. Strains
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HylA, an Alternative Hydrolase for Initiation of Catabolism of the Phenylurea Herbicide Linuron in Variovorax sp. Strains

机译:HylA,另一种水解酶,用于启动Variovorax sp。中苯脲除草剂利奴隆的分解代谢。菌株

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摘要

Variovorax sp. strain WDL1, which mineralizes the phenylurea herbicide linuron, expresses a novel linuron-hydrolyzing enzyme, HylA, that converts linuron to 3,4-dichloroaniline (DCA). The enzyme is distinct from the linuron hydrolase LibA enzyme recently identified in other linuron-mineralizing Variovorax strains and from phenylurea-hydrolyzing enzymes (PuhA, PuhB) found in Gram-positive bacteria. The dimeric enzyme belongs to a separate family of hydrolases and differs in Km, temperature optimum, and phenylurea herbicide substrate range. Within the metal-dependent amidohydrolase superfamily, HylA and PuhA/PuhB belong to two distinct protein families, while LibA is a member of the unrelated amidase signature family. The hylA gene was identified in a draft genome sequence of strain WDL1. The involvement of hylA in linuron degradation by strain WDL1 is inferred from its absence in spontaneous WDL1 mutants defective in linuron hydrolysis and its presence in linuron-degrading Variovorax strains that lack libA. In strain WDL1, the hylA gene is combined with catabolic gene modules encoding the downstream pathways for DCA degradation, which are very similar to those present in Variovorax sp. SRS16, which contains libA. Our results show that the expansion of a DCA catabolic pathway toward linuron degradation in Variovorax can involve different but isofunctional linuron hydrolysis genes encoding proteins that belong to evolutionary unrelated hydrolase families. This may be explained by divergent evolution and the independent acquisition of the corresponding genetic modules.
机译:Variovorax sp。 WDL1菌株使苯基脲除草剂亚麻嘧啶矿化,它表达了一种新型的亚麻嘧啶水解酶HylA,该酶可将亚麻嘧啶转化为3,4-二氯苯胺(DCA)。该酶不同于最近在其他线性尿酸矿化的Variovorax菌株中鉴定的线性尿酸水解酶LibA酶和革兰氏阳性细菌中发现的苯基脲水解酶(PuhA,PuhB)。该二聚酶属于一个独立的水解酶家族,其Km,最适温度和苯脲除草剂底物范围不同。在金属依赖性酰胺水解酶超家族中,HylA和PuhA / PuhB属于两个不同的蛋白质家族,而LibA是不相关的酰胺酶签名家族的成员。在菌株WDL1的基因组草图序列中鉴定出hylA基因。 HylA参与菌株WDL1降解亚麻嘧啶的原因是,它不存在自发性WDL1突变体,而该突变体在linuron水解中存在缺陷,并且在缺乏libA的降解linuron的Variovorax菌株中也存在。在WDL1菌株中,hylA基因与分解代谢基因模块结合,这些模块编码DCA降解的下游途径,与Variovorax sp。中存在的途径非常相似。 SRS16,其中包含libA。我们的研究结果表明,Variovorax中DCA分解代谢途径向亚油酸降解的扩展可能涉及不同但功能相同的亚油酸水解基因,这些基因编码属于进化无关水解酶家族的蛋白质。这可以通过发散进化和相应遗传模块的独立获取来解释。

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