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Biochemistry of Microbial Degradation of Hexachlorocyclohexane and Prospects for Bioremediation

机译:六氯环己烷的微生物降解生物化学及其修复的前景

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摘要

Summary: Lindane, the γ-isomer of hexachlorocyclohexane (HCH), is a potent insecticide. Purified lindane or unpurified mixtures of this and α-, β-, and δ-isomers of HCH were widely used as commercial insecticides in the last half of the 20th century. Large dumps of unused HCH isomers now constitute a major hazard because of their long residence times in soil and high nontarget toxicities. The major pathway for the aerobic degradation of HCH isomers in soil is the Lin pathway, and variants of this pathway will degrade all four of the HCH isomers although only slowly. Sequence differences in the primary LinA and LinB enzymes in the pathway play a key role in determining their ability to degrade the different isomers. LinA is a dehydrochlorinase, but little is known of its biochemistry. LinB is a hydrolytic dechlorinase that has been heterologously expressed and crystallized, and there is some understanding of the sequence-structure-function relationships underlying its substrate specificity and kinetics, although there are also some significant anomalies. The kinetics of some LinB variants are reported to be slow even for their preferred isomers. It is important to develop a better understanding of the biochemistries of the LinA and LinB variants and to use that knowledge to build better variants, because field trials of some bioremediation strategies based on the Lin pathway have yielded promising results but would not yet achieve economic levels of remediation.
机译:摘要:六氯环己烷(HCH)的γ-异构体林丹是一种有效的杀虫剂。纯化的林丹或未纯化的林丹与六氯环己烷的α-,β-和δ-异构体混合物在20世纪后半叶被广泛用作商业杀虫剂。现在,大量未使用的六氯环己烷异构体的倾倒构成了主要危险,因为它们在土壤中的停留时间长且非目标毒性很高。土壤中六氯环己烷异构体的有氧降解的主要途径是林途径,该途径的变体将降解所有四种六氯环己烷异构体,尽管速度很慢。该途径中主要LinA和LinB酶的序列差异在确定其降解不同异构体的能力中起关键作用。 LinA是一种脱氯化氢酶,但对其生物化学知之甚少。 LinB是一种水解脱氯酶,已异源表达和结晶,尽管也存在一些明显的异常现象,但对底物特异性和动力学背后的序列-结构-功能关系已有一定了解。据报道,即使对于其优选的异构体,某些LinB变体的动力学也很慢。重要的是要更好地了解LinA和LinB变体的生物化学,并利用这些知识来构建更好的变体,因为基于Lin途径的某些生物修复策略的现场试验已产生了可喜的结果,但尚未达到经济水平补救措施。

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