We have determined the X-ray crystal structures of the NADH-dependent alcohol dehydrogenase LlAdhA from Lactococcus lactis and its laboratory-evolved variant LlAdhA(RE1) at 1.9Ã and 2.5Ã resolution, respectively. LlAdhA(RE1), which contains three amino acid mutations (Y50F, I212T, and L264V), was engineered to increase the microbial production of isobutanol (2-methylpropan-1-ol) from isobutyraldehyde (2-methylpropanal). Structural comparison of LlAdhA and LlAdhA(RE1) indicates that the enhanced activity on isobutyraldehyde stems from increases in the protein's active site size, hydrophobicity, and substrate access. Further structure-guided mutagenesis generated a quadruple mutant (Y50F/N110S/I212T/L264V), whose KM for isobutyraldehyde is â¼17-fold lower and catalytic efficiency (kcat/KM) is â¼160-fold higher than wild-type LlAdhA. Combining detailed structural information and directed evolution, we have achieved significant improvements in non-native alcohol dehydrogenase activity that will facilitate the production of next-generation fuels such as isobutanol from renewable resources.
Structure-guided engineering of Lactococcus lactis alcohol dehydrogenase LlAdhA for improved conversion of isobutyraldehyde to isobutanol.
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作者:Liu Xiang, Bastian Sabine, Snow Christopher D, Brustad Eric M, Saleski Tatyana E, Xu Jian-He, Meinhold Peter, Arnold Frances H
| 期刊: | Journal of Biotechnology | 影响因子: | 3.900 |
| 时间: | 2012 | 起止号: | 2012 Dec 15; 164(2):188-95 |
| doi: | 10.1016/j.jbiotec.2012.08.008 | ||
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