首页> 外文期刊>BMC Microbiology >Cloning, functional expression and characterization of a bifunctional 3-hydroxybutanal dehydrogenase /reductase involved in acetone metabolism by Desulfococcus biacutus
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Cloning, functional expression and characterization of a bifunctional 3-hydroxybutanal dehydrogenase /reductase involved in acetone metabolism by Desulfococcus biacutus

机译:双功能3-羟基丁醛脱氢酶/还原酶的克隆,功能表达和表征

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The strictly anaerobic, sulfate-reducing bacterium Desulfococcus biacutus can utilize acetone as sole carbon and energy source for growth. Whereas in aerobic and nitrate-reducing bacteria acetone is activated by carboxylation with CO2 to acetoacetate, D. biacutus involves CO as a cosubstrate for acetone activation through a different, so far unknown pathway. Proteomic studies indicated that, among others, a predicted medium-chain dehydrogenase/reductase (MDR) superfamily, zinc-dependent alcohol dehydrogenase (locus tag DebiaDRAFT_04514) is specifically and highly produced during growth with acetone. The MDR gene DebiaDRAFT_04514 was cloned and overexpressed in E. coli. The purified recombinant protein required zinc as cofactor, and accepted NADH/NAD+ but not NADPH/NADP+ as electron donor/acceptor. The pH optimum was at pH 8, and the temperature optimum at 45 °C. Highest specific activities were observed for reduction of C3 - C5-aldehydes with NADH, such as propanal to propanol (380 ± 15 mU mg−1 protein), butanal to butanol (300 ± 24 mU mg−1), and 3-hydroxybutanal to 1,3-butanediol (248 ± 60 mU mg−1), however, the enzyme also oxidized 3-hydroxybutanal with NAD+ to acetoacetaldehyde (83 ± 18 mU mg−1). The enzyme might play a key role in acetone degradation by D. biacutus, for example as a bifunctional 3-hydroxybutanal dehydrogenase/reductase. Its recombinant production may represent an important step in the elucidation of the complete degradation pathway.
机译:严格厌氧,可减少硫酸盐的细菌双歧Desulfococcus biacutus可以利用丙酮作为唯一的碳和能源来生长。在需氧和减少硝酸盐的细菌中,丙酮通过与CO2羧化生成乙酰乙酸而被活化,而D. biacutus涉及通过另一种迄今未知的途径将CO作为丙酮活化的共底物。蛋白质组学研究表明,除其他外,预计的中链脱氢酶/还原酶(MDR)超家族,锌依赖性酒精脱氢酶(场所标签DebiaDRAFT_04514)是在丙酮生长过程中特别产生的。 MDR基因DebiaDRAFT_04514被克隆并在大肠杆菌中过表达。纯化的重组蛋白需要锌作为辅因子,并接受NADH / NAD +而非NADPH / NADP +作为电子供体/受体。最适pH为pH 8,最适温度为45°C。观察到以NADH还原C3-C5-醛的最高比活,如丙醛至丙醇(380±15 mU mg-1蛋白),丁醛至丁醇(300±24 mU mg-1)和3-羟基丁醛1,3-丁二醇(248±60 mU mg-1),但是,该酶也用NAD +将3-羟基丁醛氧化为乙酰乙醛(83±18 mU mg-1)。该酶可能在Diabiacutus的丙酮降解中起关键作用,例如作为双功能3-羟基丁醛脱氢酶/还原酶。其重组生产可能是阐明完整降解途径的重要步骤。

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