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Improving the activity of Trichoderma reesei Cel7B through stabilizing the transition state

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논문

Improving the activity of Trichoderma reesei Cel7B through stabilizing the transition state

학술지

Biotechnology and bioengineering

저자명

Wang, Yefei; Song, Xiangfei; Zhang, Shujun; Li, Jingwen; Shu, Zhiyu; He, Chunyan; Huang, Qingshan; Yao, Lishan

초록

<P><B>ABSTRACT</B></P><P><I>Trichoderma reesei</I> (<I>Tr</I>.) cellulases, which convert cellulose to reducing sugars, are a promising catalyst used in the lignocellulosic biofuel production. Improving <I>Tr</I>. cellulases activity, though very difficult, is highly desired due to the recalcitrance of lignocellulose. Meanwhile, it is preferable to enhance the cellulase's promiscuity so that substrates other than cellulose can also be hydrolyzed. In this work, an attempt is made to improve the catalytic activity of a major endogluanase <I>Tr</I>. Cel7B against xylan which crosslinks with cellulose in lignocellulose. By using quantum mechanics/molecular mechanics (QM/MM) molecular dynamics (MD) simulations, the transition state of the xylo&#8208;oligosaccharide hydrolysis is identified. Then, mutations are introduced and their effect on the transition state stabilization is ranked based on the free energy calculations. Seven top ranked mutants are evaluated experimentally. Three mutants A208Q, A222D, and G230R show a higher activity than the wild&#8208;type <I>Tr</I>. Cel7B in the hydrolysis of xylan (by up to 47%) as well as filter paper (by up to 50%). The combination of the single mutants can further improve the enzyme activity. Our work demonstrates that the free energy method is effective in engineering the <I>Tr</I>. Cel7B activity against xylan and cellulose, and thus may also be useful for improving the activity of other <I>Tr</I>. cellulases. Biotechnol. Bioeng. 2016;113: 1171&ndash;1177. &copy; 2015 Wiley Periodicals, Inc.</P>

발행연도

2016

ISSN

0006-3592

ISSN

1097-0290

113

6

페이지

pp.1171-1177

주제어

cel7B; transition state; cellulase; molecular dynamics simulation; protein engineering

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1 2023-12-11

논문; 2016-12-31

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