首页> 外文期刊>The biochemical journal >Purification of acetaldehyde dehydrogenase and alcohol dehydrogenases from Thermoanaerobacter ethanolicus 39E and characterization of the secondary-alcohol dehydrogenase (2° Adh) as a bifunctional alcohol dehydrogenase-acetyl-CoA reductive thioesterase
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Purification of acetaldehyde dehydrogenase and alcohol dehydrogenases from Thermoanaerobacter ethanolicus 39E and characterization of the secondary-alcohol dehydrogenase (2° Adh) as a bifunctional alcohol dehydrogenase-acetyl-CoA reductive thioesterase

机译:从乙醇嗜热厌氧菌39E中纯化乙醛脱氢酶和醇脱氢酶,并将仲醇脱氢酶(2°Adh)表征为双功能醇脱氢酶-乙酰辅酶A还原性硫酯酶

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pThe purification and characterization of three enzymes involved in ethanol formation from acetyl-CoA in Thermoanaerobacter ethanolicus 39E (formerly Clostridium thermohydrosulfuricum 39E) is described. The secondary-alcohol dehydrogenase (2 degrees Adh) was determined to be a homotetramer of 40 kDa subunits (SDS/PAGE) with a molecular mass of 160 kDa. The 2 degrees Adh had a lower catalytic efficiency for the oxidation of 1 degree alcohols, including ethanol, than for the oxidation of secondary (2 degrees) alcohols or the reduction of ketones or aldehydes. This enzyme possesses a significant acetyl-CoA reductive thioesterase activity as determined by NADPH oxidation, thiol formation and ethanol production. The primary-alcohol dehydrogenase (1 degree Adh) was determined to be a homotetramer of 41.5 kDa (SDS/PAGE) subunits with a molecular mass of 170 kDa. The 1 degree Adh used both NAD(H) and NADP(H) and displayed higher catalytic efficiencies for NADP(+)-dependent ethanol oxidation and NADH-dependent acetaldehyde (identical to ethanal) reduction than for NADPH-dependent acetaldehyde reduction or NAD(+)-dependent ethanol oxidation. The NAD(H)-linked acetaldehyde dehydrogenase was a homotetramer (360 kDa) of identical subunits (100 kDa) that readily catalysed thioester cleavage and condensation. The 1 degree Adh was expressed at 5-20% of the level of the 2 degrees Adh throughout the growth cycle on glucose. The results suggest that the 2 degrees Adh primarily functions in ethanol production from acetyl-CoA and acetaldehyde, whereas the 1 degree Adh functions in ethanol consumption for nicotinamide-cofactor recycling./p
机译:>描述了乙醇嗜热厌氧杆菌39E(以前称为热氢硫酸尿梭菌)中从乙酰辅酶A形成乙醇的三种酶的纯化和表征。仲醇脱氢酶(2度Adh)经测定为40 kDa亚基的同四聚体(SDS / PAGE),分子量为160 kDa。对于1度醇(包括乙醇)的氧化,2度Adh的催化效率比对仲(2度)醇的氧化或酮或醛的还原要低。该酶具有显着的乙酰辅酶A还原性硫酯酶活性,如通过NADPH氧化,硫醇形成和乙醇生产所确定。伯醇脱氢酶(1度Adh)被确定为41.5 kDa(SDS / PAGE)亚基的同型四聚体,分子量为170 kDa。 1度Adh同时使用NAD(H)和NADP(H)并显示出比NADPH依赖的乙醛还原或NAD()更高的NADP(+)依赖的乙醇氧化和NADH依赖的乙醛(等同于乙醇)还原的催化效率。 +)依赖性乙醇氧化。 NAD(H)连接的乙醛脱氢酶是具有相同亚基(100 kDa)的同型四聚体(360 kDa),可轻易催化硫酯的裂解和缩合。在葡萄糖的整个生长周期中,1度Adh表示为2度Adh的水平的5-20%。结果表明,2度的Adh主要作用于乙酰辅酶A和乙醛的乙醇生产,而1度的Adh作用于对烟酰胺辅酶再循环的乙醇消耗。

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