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Stereoselective Microbial Dehalorespiration with Vicinal Dichlorinated Alkanes

机译:邻二氯链烷的立体选择性微生物除汗

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摘要

The suspected carcinogen 1,2-dichloroethane (1,2-DCA) is the most abundant chlorinated C2 groundwater pollutant on earth. However, a reductive in situ detoxification technology for this compound does not exist. Although anaerobic dehalorespiring bacteria are known to catalyze several dechlorination steps in the reductive-degradation pathway of chlorinated ethenes and ethanes, no appropriate isolates that selectively and metabolically convert them into completely dechlorinated end products in defined growth media have been reported. Here we report on the isolation of Desulfitobacterium dichloroeliminans strain DCA1, a nutritionally defined anaerobic dehalorespiring bacterium that selectively converts 1,2-dichloroethane and all possible vicinal dichloropropanes and -butanes into completely dechlorinated end products. Menaquinone was identified as an essential cofactor for growth of strain DCA1 in pure culture. Strain DCA1 converts chiral chlorosubstrates, revealing the presence of a stereoselective dehalogenase that exclusively catalyzes an energy-conserving anti mechanistic dichloroelimination. Unlike any known dehalorespiring isolate, strain DCA1 does not carry out reductive hydrogenolysis reactions but rather exclusively dichloroeliminates its substrates. This unique dehalorespiratory biochemistry has shown promising application possibilities for bioremediation purposes and fine-chemical synthesis.
机译:疑似致癌物1,2-二氯乙烷(1,2-DCA)是地球上最丰富的氯化C2地下水污染物。但是,不存在该化合物的还原原位解毒技术。尽管已知厌氧性脱呼吸细菌可以催化氯化乙烯和乙烷的还原降解途径中的几个脱氯步骤,但尚无合适的分离物在确定的生长培养基中选择性地和代谢性地将其转化为完全脱氯的最终产物的报道。在这里,我们报告了脱硫细菌二氯阿米松菌株DCA1的分离,该菌株是一种营养学上确定的厌氧脱卤呼吸细菌,可选择性地将1,2-二氯乙烷和所有可能的邻二氯丙烷和-丁烷转化为完全脱氯的最终产物。甲基萘醌被认为是纯培养物中DCA1菌株生长的必要辅助因子。菌株DCA1转化了手性氯底物,表明存在立体选择性脱卤酶,该酶专门催化节能的抗机械二氯消除作用。与任何已知的脱汗呼吸分离物不同,菌株DCA1不会进行还原性氢解反应,而只会二氯消除其底物。这种独特的脱呼吸呼吸生物化学方法已显示出有望用于生物修复和精细化学合成的应用可能性。

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