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由 Rieske 非血红素单核铁加氧酶 MdpJ 从仲醇底物合成短链二醇和不饱和醇。

Synthesis of short-chain diols and unsaturated alcohols from secondary alcohol substrates by the Rieske nonheme mononuclear iron oxygenase MdpJ.

机构信息

Helmholtz Centre for Environmental Research, Department of Environmental Microbiology, Leipzig, Germany.

出版信息

Appl Environ Microbiol. 2012 Sep;78(17):6280-4. doi: 10.1128/AEM.01434-12. Epub 2012 Jun 29.

Abstract

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.

摘要

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。

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