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Reversible Biological Birch Reduction at an Extremely Low Redox Potential

机译:在极低的氧化还原电位下可逆的生物桦木还原

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摘要

The Birch reduction of aromatic rings to cyclohexadiene compounds is widely used in chemical synthesis and requires solvated electrons, the most potent reductants known in organic chemistry. Benzoyl-coenzyme A (CoA) reductases (BCR) are key enzymes in the anaerobic bacterial degradation of aromatic compounds and catalyze an analogous reaction under physiological conditions. Class I BCRs are FeS enzymes and couple the reductive dearomatization of benzoyl-CoA to cyclohexa-1,5-diene-1-carboxyl-CoA (dienoyl-CoA) to a stoichiometric ATP hydrolysis. Here, we report on a tungsten-containing class II BCR from Geobacter metallireducens that catalyzed the fully reversible, ATP-independent dearomatization of benzoyl-CoA to dienoyl-CoA. BCR additionally catalyzed the disproportionation of dienoyl-CoA to benzoyl-CoA/monoenoyl-CoA and the four- and six-electron reduction of benzoyl-CoA in the presence of a reduced low-potential bridged 2,2′-bipyridyl redox dye. Reversible redox titration experiments in the presence of this redox dye revealed a midpoint potential of E0′= −622 mV for the benzoyl-CoA/dienoyl-CoA couple, which is far below the values of other known reversible substrate/product redox couples in enzymology. This work demonstrates the efficiency of reversible metalloenzyme catalysis, which in chemical synthesis can only be achieved under essentially irreversible conditions.
机译:芳香环的桦木还原为环己二烯化合物广泛用于化学合成中,并且需要溶剂化的电子,这是有机化学中已知的最有效的还原剂。苯甲酰基辅酶A(CoA)还原酶(BCR)是芳香族化合物厌氧细菌降解中的关键酶,并在生理条件下催化类似反应。 I类BCR是FeS酶,将苯甲酰基-CoA的还原脱芳香化作用与环六-1,5-二烯-1-羧基-CoA(二壬基-CoA)与化学计量的ATP水解偶联。在这里,我们报道了来自Geobacter metallireducens的含钨II类BCR,该BCR催化了苯甲酰基-CoA完全可逆的,不依赖ATP的脱芳香化反应生成二烯丙基-CoA。在存在低电势桥接的2,2'-联吡啶氧化还原染料的情况下,BCR还催化了二烯酰基-CoA歧化成苯甲酰基-CoA /单烯酰基-CoA的歧化,以及苯甲酰基-CoA的四电子和六电子还原。在存在这种氧化还原染料的情况下进行的可逆氧化还原滴定实验表明,苯甲酰基-CoA /二烯酰基-CoA对的中点电势为E 0 '= -622 mV,远低于其他已知的值酶学中可逆的底物/产物氧化还原对。这项工作证明了可逆金属酶催化的效率,这在化学合成中只能在基本上不可逆的条件下实现。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第28期|p.9850-9856|共7页
  • 作者

    Johannes W. Kung;

  • 作者单位

    Institute of Biochemistry, University of Leipzig, 04103 Leipzig, Germany, Helmholtz Centre for Environmental Research - UFZ, Department of Metabolomics, 04318 Leipzig, Germany, Helmholtz Centre for Environmental Research - UFZ, Department of Proteomics, 0;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:50:18

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