首页> 外文期刊>Journal of bacteriology >Family Shuffling of Soil DNA To Change the Regiospecificity of Burkholderia xenovorans LB400 Biphenyl Dioxygenase
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Family Shuffling of Soil DNA To Change the Regiospecificity of Burkholderia xenovorans LB400 Biphenyl Dioxygenase

机译:家庭改组土壤DNA,以改变异种伯克霍尔德氏菌LB400联苯双加氧酶的区域特异性

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Previous work has shown that the C-terminal portion of BphA, especially two amino acid segments designated region III and region IV, influence the regiospecificity of the biphenyl dioxygenase (BPDO) toward 2,2′-dichlorobiphenyl (2,2′-CB). In this work, we evolved BPDO by shuffling bphA genes amplified from polychlorinated biphenyl-contaminated soil DNA. Sets of approximately 1-kb DNA fragments were amplified with degenerate primers designed to amplify the C-terminal portion of bphA. These fragments were shuffled, and the resulting library was used to replace the corresponding fragment of Burkholderia xenovorans LB400 bphA. Variants were screened for their ability to oxygenate 2,2′-CB onto carbons 5 and 6, which are positions that LB400 BPDO is unable to attack. Variants S100, S149, and S151 were obtained and exhibited this feature. Variant S100 BPDO produced exclusively cis-5,6-dihydro-5,6-dihydroxy-2,2′-dichlorobiphenyl from 2,2′-CB. Moreover, unlike LB400 BPDO, S100 BphA catalyzed the oxygenation of 2,2′,3,3′-tetrachlorobiphenyl onto carbons 5 and 6 exclusively and it was unable to oxygenate 2,2′,5,5′-tetrachlorobiphenyl. Based on oxygen consumption measurements, variant S100 oxygenated 2,2′-CB at a rate of 16 ± 1 nmol min?1 per nmol enzyme, which was similar to the value observed for LB400 BPDO. cis-5,6-Dihydro-5,6-dihydroxy-2,2′-dichlorobiphenyl was further oxidized by 2,3-dihydro-2,3-dihydroxybiphenyl dehydrogenase (BphB) and 2,3-dihydroxybiphenyl dioxygenase (BphC). Variant S100 was, in addition, able to oxygenate benzene, toluene, and ethyl benzene. Sequence analysis identified amino acid residues M237S238 and S283 outside regions III and IV that influence the activity toward doubly ortho-substituted chlorobiphenyls.
机译:先前的研究表明,BphA的C端部分,尤其是两个分别命名为区域III和区域IV的氨基酸片段,会影响联苯双加氧酶(BPDO)对2,2'-二氯联苯(2,2'-CB)的区域特异性。在这项工作中,我们通过改组从多氯联苯污染的土壤DNA扩增的 bphA 基因来进化BPDO。用设计用于扩增 bphA C端部分的简并引物扩增出大约1kb的DNA片段。将这些片段改组,然后将所得文库用于替换 Burkholderia xenovorans LB400 bphA 的相应片段。筛选变异体氧化2,2'-CB的能力碳5和6,这是LB400 BPDO无法攻击的位置。获得了变体S100,S149和S151,并显示了此功能。 S100 BPDO变体仅从2,2'-CB生成顺式 -5,6-二氢-5,6-二羟基-2,2'-二氯联苯。此外,与LB400 BPDO不同,S100 BphA仅将2,2',3,3'-四氯联苯氧化到碳5和6上,而无法氧化2,2',5,5'-四氯联苯。根据耗氧量测量,变体S100以每nmol酶16±1 nmol min ?1 的速率氧化2,2'-CB,与LB400 BPDO观察到的值相似。 顺式 -5,6-二氢-5,6-二羟基-2,2'-二氯联苯进一步被2,3-二氢-2,3-二羟基联苯脱氢酶(BphB)和2,3氧化-二羟基联苯双加氧酶(BphC)。另外,变体S100能够氧化苯,甲苯和乙苯。序列分析确定了III和IV区以外的氨基酸残基M 237 S 238 和S 283 ,这些氨基酸残基影响对 ortho < -em-取代的氯联苯。

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