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Activity of Lactobacillus brevis Alcohol Dehydrogenase on Primary and Secondary Alcohol Biofuel Precursors

机译:短乳杆菌乙醇脱氢酶对一级和二级酒精生物燃料前体的活性

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摘要

The R-specific alcohol dehydrogenase (ADH) from Lactobacillus brevis LB19 (LbADH) was studied with respect to its ability to reduce a series of 3- through 5-carbon 2-alkanones and aldehydes of relevance as biofuel precursors. Although active on all substrates tested, LbADH displays a marked preference for longer chain substrates. Interestingly, however, 2-alkanones were found to impose substrate inhibition towards LbADH, whereas aldehyde substrates rendered no such effect. Inhibition caused by 2-alkanones was furthermore found to intensify with increasing chain length. Despite demonstrating both primary and secondary ADH activities, a preliminary sequence analysis suggests that LbADH remains distinct from other, previously characterized primary-secondary ADHs. In addition to further characterizing the substrate range of this industrially important enzyme, this study suggests that LbADH has the potential to serve as a useful enzyme for the engineering of various novel alcohol biofuel pathways.
机译:研究了来自短乳杆菌LB19(LbADH)的R特异性醇脱氢酶(ADH)的能力,该能力可还原一系列3至5碳2链烷酮和与生物燃料有关的醛。尽管在所有测试的底物上都具有活性,但LbADH对较长链的底物表现出明显的偏爱。然而,有趣的是,发现2-链烷酮对LbADH具有底物抑制作用,而醛底物则没有这种作用。此外发现2-链烷酮引起的抑制作用随着链长的增加而增强。尽管同时显示了一级和二级ADH活性,但初步序列分析表明LbADH与其他先前表征的一级-二级ADH仍然不同。除了进一步表征这种工业上重要的酶的底物范围外,这项研究还表明LbADH有潜力作为有用的酶,用于工程化各种新型酒精生物燃料途径。

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