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A Novel Hydrolytic Dehalogenase for the Chlorinated Aromatic Compound Chlorothalonil▿

机译:一种新型的氯代芳香族绿藻腈水解脱卤酶

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摘要

Dehalogenases play key roles in the detoxification of halogenated aromatics. Interestingly, only one hydrolytic dehalogenase for halogenated aromatics, 4-chlorobenzoyl-coenzyme A (CoA) dehalogenase, has been reported. Here, we characterize another novel hydrolytic dehalogenase for a halogenated aromatic compound from the 2,4,5,6-tetrachloroisophthalonitrile (chlorothalonil)-degrading strain of Pseudomonas sp. CTN-3, which we have named Chd. Chd catalyzes a hydroxyl substitution at the 4-chlorine atom of chlorothalonil. The metabolite of the Chd dehalogenation, 4-hydroxy-trichloroisophthalonitrile, was identified by reverse-phase high-performance liquid chromatography (HPLC), tandem mass spectrometry (MS/MS), and nuclear magnetic resonance (NMR). Chd dehalogenates chlorothalonil under anaerobic and aerobic conditions and does not require the presence of cofactors such as CoA and ATP. Chd contains a putative conserved domain of the metallo-β-lactamase superfamily and shows the highest identity with several metallohydrolases (24 to 29%). Chd is a monomer (36 kDa), and the isoelectric point (pI) of Chd is estimated to be 4.13. Chd has a dissociation constant (Km) of 0.112 mM and an overall catalytic rate (kcat) of 207 s−1 for chlorothalonil. Chd is completely inhibited by 1,10-phenanthroline, diethyl pyrocarbonate, and N-bromosuccinic acid. Site-directed mutagenesis of Chd revealed that histidines 128 and 157, serine 126, aspartates 45, 130 and 184, and tryptophan 241 were essential for the dehalogenase activity. Chd differs from other reported hydrolytic dehalogenases based on the analysis of amino acid sequences and catalytic mechanisms. This study provides an excellent dehalogenase candidate for mechanistic study of hydrolytic dehalogenation of halogenated aromatic compound.
机译:脱卤酶在卤代芳烃的解毒中起关键作用。有趣的是,仅报道了一种用于卤代芳族化合物的水解脱卤酶,即4-氯苯甲酰基辅酶A(CoA)脱卤酶。在这里,我们表征了Pseudomonas sp的2,4,5,6-四氯间苯二甲腈(chlorothalonil)降解菌株中的一种卤代芳族化合物的新型水解脱卤酶。 CTN-3,我们将其命名为Chd。 Chd在百菌清的4-氯原子上催化羟基取代。通过反相高效液相色谱(HPLC),串联质谱(MS / MS)和核磁共振(NMR)鉴定了Chd脱卤的代谢产物4-羟基-三氯间苯二甲腈。 Chd在厌氧和有氧条件下使百菌清脱卤,并且不需要辅酶(例如CoA和ATP)的存在。 Chd包含一个金属β-内酰胺酶超家族的保守域,与几种金属水解酶(24%到29%)具有最高的同一性。 Chd是单体(36 kDa),Chd的等电点(pI)估计为4.13。 Chd的百菌清的解离常数(Km)为0.112 mM,总催化速率(kcat)为207 s-1。 1,10-菲咯啉,焦碳酸二乙酯和N-溴丁二酸可完全抑制Chd。 Chd的定点诱变表明,组氨酸128和157,丝氨酸126,天冬氨酸45、130和184和色氨酸241对于脱卤酶活性至关重要。根据氨基酸序列和催化机理的分析,Chd与其他报道的水解脱卤素酶不同。该研究为卤代芳族化合物水解脱卤的机理研究提供了极好的脱卤酶候选物。

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