Helmholtz Centre for Environmental Research, Department of Environmental Microbiology, Leipzig, Germany.
Appl Environ Microbiol. 2012 Sep;78(17):6280-4. doi: 10.1128/AEM.01434-12. Epub 2012 Jun 29.
The Rieske nonheme mononuclear iron oxygenase MdpJ of the fuel oxygenate-degrading bacterial strain Aquincola tertiaricarbonis L108 has been described to attack short-chain tertiary alcohols via hydroxylation and desaturation reactions. Here, we demonstrate that also short-chain secondary alcohols can be transformed by MdpJ. Wild-type cells of strain L108 converted 2-propanol and 2-butanol to 1,2-propanediol and 3-buten-2-ol, respectively, whereas an mdpJ knockout mutant did not show such activity. In addition, wild-type cells converted 3-methyl-2-butanol and 3-pentanol to the corresponding desaturation products 3-methyl-3-buten-2-ol and 1-penten-3-ol, respectively. The enzymatic hydroxylation of 2-propanol resulted in an enantiomeric excess of about 70% for the (R)-enantiomer, indicating that this reaction was favored. Likewise, desaturation of (R)-2-butanol to 3-buten-2-ol was about 2.3-fold faster than conversion of the (S)-enantiomer. The biotechnological potential of MdpJ for the synthesis of enantiopure short-chain alcohols and diols as building block chemicals is discussed.
燃料氧代降解细菌Aquifex tertiaricarbonis L108 的 Rieske 非血红素单核铁加氧酶 MdpJ 已被描述为通过羟化和去饱和反应攻击短链叔醇。在这里,我们证明 MdpJ 也可以转化短链仲醇。野生型 L108 菌株的细胞将 2-丙醇和 2-丁醇分别转化为 1,2-丙二醇和 3-丁烯-2-醇,而 mdpJ 敲除突变体则没有这种活性。此外,野生型细胞将 3-甲基-2-丁醇和 3-戊醇分别转化为相应的去饱和产物 3-甲基-3-丁烯-2-醇和 1-戊烯-3-醇。2-丙醇的酶促羟化反应对(R)-对映体的对映体过量约为 70%,表明该反应受到偏爱。同样,(R)-2-丁醇的去饱和反应比(S)-对映体的转化快约 2.3 倍。讨论了 MdpJ 用于合成手性纯短链醇和二醇作为构建块化学品的生物技术潜力。