| Literature DB >> 23835302 |
Yuki Nakatani, Ryosuke Yamada, Chiaki Ogino, Akihiko Kondo.
Abstract
BACKGROUND: Numerous studies have examined the direct fermentation of cellulosic materials by cellulase-expressing yeast; however, ethanol productivity in these systems has not yet reached an industrial level. Certain microorganisms, such as the cellulolytic fungus Trichoderma reesei, produce expansin-like proteins, which have a cellulose-loosening effect that may increase the breakdown of cellulose. Here, to improve the direct conversion of cellulose to ethanol, yeast Saccharomyces cerevisiae co-displaying cellulase and expansin-like protein on the cell surface were constructed and examined for direct ethanol fermentation performance.Entities:
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Year: 2013 PMID: 23835302 PMCID: PMC3716962 DOI: 10.1186/1475-2859-12-66
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Strains and plasmid used in this study
| Novablue | Novagen | |
| MT8-1 | [ | |
| MT8-1/cocδBEC1 | [ | |
| MT8-1/δSWO | This study | |
| MT8-1/δELPAO | This study | |
| MT8-1/cocδBEC1/δSWO | This study | |
| MT8-1/cocδBEC1/δELPAO | This study | |
| Plasmids | ||
| pδU-PGAGSWO | URA3, expression of SWOI by δ-integration | This study |
| pδU-PGAGELPAO | URA3, expression of AoelpI by δ-integration | This study |
Polymerase chain reaction primers used in this study
| SWO(F) | 5’-ATATGTCGACCAGAATTGCGCAGCATTATTTG-3’ |
| SWO(R) | 5’-ATATAGATCTATTCTGGCTAAACTGCACACCA-3’ |
| AOELP(F) | 5’-ATATGTCGACGCAGACATATGCCGTTACCTTG-3’ |
| AOELP(R) | 5’-ATATAGATCTCCGCCGGCGGGCTGGATCTCTT-3’ |
| BGL761(F) | 5’-CTTCCAGGGCTTTGTGATGTC-3’ |
| BGL858(R) | 5’-AGGTGATATCGCCAGGCATT-3’ |
| EGII968(F) | 5’-GAACAATCGCCAGGCTATCCT-3’ |
| EGII1043(R) | 5’-TTGCTGGCACATGTCTTGTATG-3’ |
| CBHII387(F) | 5’-GGTTCCCTCTTTTATGTGGCTAGA-3’ |
| CBHII455(R) | 5’-ATGTCGGCCAAGGTTTGCT-3’ |
| AoelpI567(F) | 5’-TGGCCCTGGTTATGAAACAGA-3’ |
| AoelpI637(R) | 5’-CGGTAGTAGCAGGGTAAGCTATTCC-3’ |
Figure 1Synergism between cellulase-and expansin-like protein-expressing yeast strains. (A) PASCase activity of single-strain. (B) PASCase activity of the indicated mix of cellulase-expressing strain. Data are averages from three independent experiments (error bars represent SE).
Figure 2PASCase activity of cellulase and expansin-like protein co-expressing strain. Data are averages from three independent experiments (error bars represent SE).
Figure 3Transcription anscription levels of cellulase and expansin-like protein genes. Gray bars, MT8-1/cocδBEC1; white bars, MT8-1/cocδBEC1/δELPAO. Data are averages from three independent experiments (error bars represent SE).
Figure 4Time course of ethanol production from PASC by an engineered yeast strain. Squares, MT8-1; triangles, MT8-1/cocδBEC1; and diamonds, MT8-1/cocδBEC1/δELPAO. Data are averages from three independent experiments (error bars represent SE).