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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.
- Halloum, Ibrahim (Author)
- Thompson, Brian (Author)
- Pugh, Shawn (Author)
- Nielsen, David (Author)
- Ira A. Fulton Schools of Engineering (Contributor)
Halloum, I., Thompson, B., Pugh, S., & Nielsen, D. (2015). Activity of Lactobacillus brevis Alcohol Dehydrogenase on Primary and Secondary Alcohol Biofuel Precursors. Fermentation, 1(1), 24-37. doi:10.3390/fermentation1010024
- 2017-04-18 03:20:37
- 2021-10-22 05:34:41
- 3 years 1 month ago