Improved biomass saccharification by Trichoderma reesei through heterologous expression of lacA gene from Trametes sp. AH28-2(ENZYMOLOGY, PROTEIN ENGINEERING, AND ENZYME TECHNOLOGY)
スポンサーリンク
概要
- 論文の詳細を見る
The Trametes sp. AH28-2 laccase gene lacA fused to cellobiohydrolase I signal peptide coding sequence was heterologously expressed in T. reesei. The lacA cDNA was under the control of the Aspergillus nidulans glyceraldehyde-3-phosphate dehydrogenase promoter. Native PAGE analysis indicated that two transformants, L8 and L38, were able to secrete recombinant laccase A, and their laccase activities corresponding to ABTS oxidation reached 3.62 IU ml^<-1> and 1.50 IU ml^<-1> respectively. Most of the characteristics of the recombinant laccase were similar to those of the native enzyme. Reducing sugar yields of L8 and L38 obtained from saccharification of corn residue by crude enzyme increased by 31.3% and 71.6% respectively compared to the host strain. These results indicated that the engineering strains developed in this work could be potentially used for laccase production and tailoring cellulase properties with laccase proteins through genetic manipulation would be a feasible strategy to improve saccharification efficiency of biomass by cellulase preparation.
- 公益社団法人日本生物工学会の論文
著者
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Qu Yinbo
State Key Lab Of Microbial Technology Shandong University
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Wang Tianhong
State Key Laboratory Of Microbial Technology Shandong University
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Wang Xiaoyan
State Key Laboratory Of Microbial Technology Shandong University
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Zhang Jiwei
State Key Laboratory of Microbial Technology, Shandong University
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Xiao Peng
State Key Laboratory of Microbial Technology, Shandong University
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He Feng
State Key Laboratory of Microbial Technology, Shandong University
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He Feng
State Key Laboratory Of Microbial Technology Shandong University
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Xiao Peng
State Key Laboratory Of Microbial Technology Shandong University
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Qu Yinbo
State Key Laboratory Of Microbial Technology Shandong University
関連論文
- Biodesulfurization of Dibenzothiophene by a Newly Isolated Bacterium Mycobacterium sp. X7B
- Improved biomass saccharification by Trichoderma reesei through heterologous expression of lacA gene from Trametes sp. AH28-2(ENZYMOLOGY, PROTEIN ENGINEERING, AND ENZYME TECHNOLOGY)
- Improved biomass saccharification by Trichoderma reesei through heterologous expression of lacA gene from Trametes sp. AH28-2