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Cloning, Expression, and Characterization of Endoglucanase Gene egIV from Trichoderma viride AS 3.3711
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  • Cloning, Expression, and Characterization of Endoglucanase Gene egIV from Trichoderma viride AS 3.3711
저자명
Huang. Xiaomei,Fan. Jinxia,Yang. Qian,Chen. Xiuling,Liu. Zhihua,Wang. Yun,Wang. Daqing
간행물명
Journal of microbiology and biotechnology
권/호정보
2012년|22권 3호|pp.390-399 (10 pages)
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한국미생물생명공학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Endoglucanase gene egIV was cloned from Trichoderma viride AS 3.3711, an important cellulose-producing fungus, by using an RT-PCR protocol. The egIV cDNA is 1,297 bp in length and contains a 1,035 bp open reading frame encoding a 344 amino acid protein with an estimated molecular mass of 35.5 kDa and isoelectronic point (pI) of 5.29. The expression of gene egIV in T. viride AS 3.3711 could be induced by sucrose, corn straw, carboxymethylcellulose (CMC), or microcrystalline cellulose, but especially by CMC. The transcripts of egIV were regulated under these substrates, but the expression level of the egIV gene could be inhibited by glucose and fructose. Three recombinant vectors, pYES2-xegIV, $pYES2M{alpha}$-egIV, and $pYES2M{alpha}$-xegIV, were constructed to express the egIV gene in Saccharomyces cerevisiae H158. The CMCase activity of yeast transformants $IpYES2M{alpha}$-xegIV was higher than that of transformant IpYES2-xegIV or $IpYES2M{alpha}$-egIV, with the highest activity of 0.13 U/ml at induction for 48 h, illustrating that the modified egIV gene could enhance CMCase activity and that $MF{alpha}$ signal peptide from S. cerevisiae could regulate exogenous gene expression more effectively in S. cerevisiae. The recombinant EGIV enzyme was stable at pH 3.5 to 7.5 and temperature of $35^{circ}C$ to $65^{circ}C$. The optimal reaction condition for EGIV enzyme activity was at the temperature of $55^{circ}C$, pH of 5.0, 0.75 mM $Ba^{2+}$, and using CMC as substrate. Under these conditions, the highest activity of EGIV enzyme in transformant $IpYES2M{alpha}$-xegIV was 0.18 U/ml. These properties would provide technical parameters for utilizing cellulose in industrial bioethanol production.