首页> 外文期刊>Applied and Environmental Microbiology >Oxidation of 6,7-dihydro-5H-benzocycloheptene by bacterial strains expressing naphthalene dioxygenase, biphenyl dioxygenase, and toluene dioxygenase yields homochiral monol or cis-diol enantiomers as major products.
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Oxidation of 6,7-dihydro-5H-benzocycloheptene by bacterial strains expressing naphthalene dioxygenase, biphenyl dioxygenase, and toluene dioxygenase yields homochiral monol or cis-diol enantiomers as major products.

机译:表达萘二加氧酶,联苯二加氧酶和甲苯二加氧酶的细菌菌株对6,7-二氢-5H-苯并环庚烯的氧化作用产生了以手性一元醇或顺式二醇为对映体的主要产物。

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摘要

Bacterial strains expressing naphthalene, biphenyl, and toluene dioxygenase were examined for their abilities to oxidize 6,7-dihydro-5H-benzocycloheptene (benzocyclohept-1-ene). The major oxidation products were isolated, and their absolute configurations were determined by chiral 1H nuclear magnetic resonance analysis of diastereomeric boronate esters, chiral stationary-phase high-pressure liquid chromatography, and stereo-chemical correlation. Pseudomonas sp. strain 9816/11 and Sphingomonas yanoikuyae (formerly identified as a Beijerinckia sp.) B8/36 expressing naphthalene and biphenyl dioxygenases, respectively, oxidized benzocyclohept-1-ene to a major product identified as (-)-(1R,2S)-cis-dihydroxybenzocycloheptane (> 98% enantiomeric excess [ee], 50 and 90% yield, respectively). In contrast, Pseudomonas putida F39/D expressing toluene dioxygenase oxidized benzocyclohept-1-ene to (+)-(5R)-hydroxybenzocyclohept-1-ene (> 98% ee, 90% yield) as the major metabolite and to the "opposite" diol, (+)-(1S,2R)-cis-dihydroxybenzocycloheptane (> 98% ee, 10% yield). The results indicate that, for benzocyclohept-1-ene, the major reaction catalyzed by naphthalene and biphenyl dioxygenases is dioxygenation whereas toluene dioxygenase catalyzes mainly R-stereospecific benzylic monooxygenation. Although the type of reaction catalyzed by each organism was not predictable, the absolute configuration of the diol and monol products formed by naphthalene and toluene dioxygenases are consistent with the stereochemistry of the products formed by these enzymes from other benzocycloalkene substrates.
机译:检查了表达萘,联苯和甲苯双加氧酶的细菌菌株氧化6,7-二氢-5H-苯并环庚烯(苯并环庚-1-烯)的能力。分离出主要的氧化产物,并通过非对映体硼酸酯的手性1H核磁共振分析,手性固定相高压液相色谱法和立体化学相关性确定其绝对构型。假单胞菌分别表达萘和联苯双加氧酶的菌株9816/11和Sphingomonas yanoikuyae(以前鉴定为贝氏菌属)B8 / 36将苯并环庚-1-烯氧化为主要产物,鉴定为(-)-(1R,2S)-顺式-二羟基苯并环庚烷(> 98%对映体过量[ee],产率分别为50%和90%)。相反,表达甲苯双加氧酶的恶臭假单胞菌F39 / D将苯并环庚-1-烯氧化为(+)-(5R)-羟基苯并环庚-1-烯(> 98%ee,90%产率)作为主要代谢产物,并与“相反”。二醇,(+)-(1S,2R)-顺-二羟基苯并环庚烷(> 98%ee,10%收率)。结果表明,对于苯并环庚-1-烯,萘和联苯双加氧酶催化的主要反应是双加氧,而甲苯双加氧酶则主要催化R-立体特异性苄基单加氧。尽管无法预测每个生物体催化的反应类型,但是萘和甲苯双加氧酶形成的二醇和一元醇产物的绝对构型与这些酶从其他苯并环烯烃底物中形成的产物的立体化学一致。

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