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Purification and Properties of Primary and Secondary Alcohol Dehydrogenases from Thermoanaerobacter ethanolicus

机译:乙醇嗜热厌氧菌伯醇和仲醇脱氢酶的纯化及性质

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Thermoanaerobacter ethanolicus (ATCC 31550) has primary and secondary alcohol dehydrogenases. The two enzymes were purified to homogeneity as judged from sodium dodecyl sulfate-polyacrylamide gel electrophoresis and gel filtration. The apparent Mrs of the primary and secondary alcohol dehydrogenases are 184,000 and 172,000, respectively. Both enzymes have high thermostability. They are tetrameric with apparently identical subunits and contain from 3.2 to 5.5 atoms of Zn per subunit. The two dehydrogenases are NADP dependent and reversibly convert ethanol and 1-propanol to the respective aldehydes. The Vm values with ethanol as a substrate are 45.6 μmol/min per mg for the primary alcohol dehydrogenase and 13 μmol/min per mg for the secondary alcohol dehydrogenase at pH 8.9 and 60°C. The primary enzyme oxidizes primary alcohols, including up to heptanol, at rates similar to that of ethanol. It is inactive with secondary alcohols. The secondary enzyme is inactive with 1-pentanol or longer chain alcohols. Its best substrate is 2-propanol, which is oxidized 15 times faster than ethanol. The secondary alcohol dehydrogenase is formed early during the growth cycle. It is stimulated by pyruvate and has a low Km for acetaldehyde (44.8 mM) in comparison to that of the primary alcohol dehydrogenase (210 mM). The latter enzyme is formed late in the growth cycle. It is postulated that the secondary alcohol dehydrogenase is largely responsible for the formation of ethanol in fermentations of carbohydrates by T. ethanolicus.
机译:乙醇嗜热厌氧菌(ATCC 31550)具有伯醇和仲醇脱氢酶。根据十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和凝胶过滤判断,将两种酶纯化至均质。伯醇和仲醇脱氢酶的表观夫人分别为184,000和172,000。两种酶都具有很高的热稳定性。它们是四聚体,具有明显相同的亚基,每个亚基含3.2至5.5个Zn原子。两种脱氢酶是NADP依赖性的,可逆地将乙醇和1-丙醇转化为相应的醛。在pH 8.9和60°C下,以乙醇为底物的Vm值对于伯醇脱氢酶为45.6μmol/ min / mg,对于仲醇脱氢酶为13 mgmol / min / mg。伯酶以类似于乙醇的速率氧化伯醇,包括直至庚醇。对仲醇不活泼。二级酶与1-戊醇或更长链的醇无活性。它的最佳底物是2-丙醇,其氧化速度比乙醇快15倍。仲醇脱氢酶在生长周期的早期形成。与丙酮醇脱氢酶(210 mM)相比,它受丙酮酸刺激,乙醛的Km低(44.8 mM)。后一种酶在生长周期的后期形成。据推测,仲醇脱氢酶在乙醇发酵的乙醇杆菌的碳水化合物发酵中主要负责乙醇的形成。

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