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Engineering hyperthermostability into a mesophilic family 11 xylanase from Aspergillus oryzae by in silico design of N-terminus substitution

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논문

Engineering hyperthermostability into a mesophilic family 11 xylanase from Aspergillus oryzae by in silico design of N-terminus substitution

학술지

Biotechnology and bioengineering

저자명

Gao, Shu‐ Juan; Wang, Jun‐ Qing; Wu, Min‐ Chen; Zhang, Hui‐ Min; Yin, Xin; Li, Jian‐ Fang

초록

<P><B>Abstract</B></P><P>A mesophilic xylanase from <I>Aspergillus oryzae</I> CICC40186 (abbreviated to AoXyn11A) belongs to glycoside hydrolase family 11. The thermostability of AoXyn11A was significantly improved by substituting its N&#8208;terminus with the corresponding region of a hyperthermostable family 11 xylanase, <I>Ev</I>Xyn11<SUP>TS</SUP>. The suitable N&#8208;terminus of AoXyn11A to be replaced was selected by the comparison of B&#8208;factors between AoXyn11A and <I>Ev</I>Xyn11<SUP>TS</SUP>, which were generated and calculated after a 15&thinsp;ns molecular dynamic (MD) simulation process. Then, the predicted hybrid xylanase (designated AEx11A) was modeled, and subjected to a 2&thinsp;ns MD simulation process for calculating its total energy value. The N&#8208;terminus substitution was confirmed by comparing the total energy value of AEx11A with that of AoXyn11A. Based on the in silico design, the AEx11A was constructed and expressed in <I>Pichia pastoris</I> GS115. After 72&thinsp;h of methanol induction, the recombinant AEx11A (reAEx11A) activity reached 82.2&thinsp;U/mL. The apparent temperature optimum of reAEx11A was 80&deg;C, much higher than that of reAoXyn11A. Its half&#8208;life was 197&#8208;fold longer than that of reAoXyn11A at 70&deg;C. Compared with reAoXyn11A, the reAEx11A displayed a slight alteration in <I>K</I><SUB>m</SUB> but a decrease in <I>V</I><SUB>max</SUB>. Biotechnol. Bioeng. 2013; 110: 1028&ndash;1038. &copy; 2012 Wiley Periodicals, Inc.</P>

발행연도

2013

발행기관

Wiley Subscription Services, Inc., A Wiley Company

ISSN

0006-3592

ISSN

1097-0290

110

4

페이지

pp.1028-1038

주제어

Aspergillus oryzae; xylanase; hyperthermostability; N&#x2010; terminus substitution; in silico design;

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1 2023-12-11

논문; 2013-12-31

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