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首页> 外文期刊>Journal of microbiology and biotechnology >Biotransformation of the Fungicide Chlorothalonil by Bacterial Glutathione S-Transferase
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Biotransformation of the Fungicide Chlorothalonil by Bacterial Glutathione S-Transferase

机译:细菌谷胱甘肽S-转移酶对杀菌剂氯噻酮的生物转化

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摘要

A gene responsible for the chlorothalonil-biotransformation was cloned from the chromosomal DNA of Ochrobactrum anthropi SH35B, an isolated bacterium strain from soil. We determined the nucleotide sequences and found an open reading frame for glutathione S-transferase (GST). The drug-hypersensitive Escherichia coli KAM3 cells transformed with a plasmid carrying the GST gene can grow in the presence of Chlorothalonil. The GST of O. anthropi SH35B was expressed in E. coli and purified by affinity chromatography. The fungicide Chlorothalonil was rapidly transformed by the purified GST in the presence of glutathione. No significant difference in the chlorothalonil-biotransformation effect was observed among the thiol compounds (cysteine, reduced glutathione, and β-mercaptoethanol). Thus, the result reported here is the first evidence on the chlorothalonil-biotransformation by conjugation with the cellular free thiol groups, especially glutathione, catalyzed by the bacterial GST.
机译:从土壤中分离的细菌人O骨SH鱼SH35B的染色体DNA中克隆了一个负责百菌清生物转化的基因。我们确定了核苷酸序列,并发现了谷胱甘肽S-转移酶(GST)的开放阅读框。用携带GST基因的质粒转化的对药物过敏的大肠杆菌KAM3细胞可以在氯噻酮存在下生长。拟南芥SH35B的GST在大肠杆菌中表达,并通过亲和层析纯化。在谷胱甘肽的存在下,纯化的GST可以快速转化杀菌剂氯噻酮。在巯基化合物(半胱氨酸,还原型谷胱甘肽和β-巯基乙醇)之间,百菌清生物转化作用没有显着差异。因此,此处报道的结果是通过细菌GST催化与细胞游离硫醇基团(尤其是谷胱甘肽)结合的百菌清生物转化的第一个证据。

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