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Modulation of the Regioselectivity of a Thermotoga neapolitana $eta$-Glucosidase by Site-Directed Mutagenesis
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  • Modulation of the Regioselectivity of a Thermotoga neapolitana $eta$-Glucosidase by Site-Directed Mutagenesis
  • Modulation of the Regioselectivity of a Thermotoga neapolitana $eta$-Glucosidase by Site-Directed Mutagenesis
저자명
Choi. Ki-Won,Park. Kyung-Min,Jun. So-Young,Park. Cheon-Seok,Park. Kwan-Hwa,Cha. Jae-Ho
간행물명
Journal of microbiology and biotechnology
권/호정보
2008년|18권 5호|pp.901-907 (7 pages)
발행정보
한국미생물생명공학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Thermotoga neapolitana $eta$-glucosidase (BglA) was subjected to site-directed mutagenesis in an effort to increase its ability to synthesize arbutin derivatives by transglycosylation. The transglycosylation reaction of the wild-type enzyme displays major ${eta}(1,6)$ and minor ${eta}(1,3)$ or ${eta}(1,4)$ regioselectivity. The three mutants, N291T, F412S, and N291T/F412S, increased the ratio of transglycosylation/hydrolysis compared with the wild-type enzyme when pNPG and arbutin were used as a substrate and an acceptor, respectively. N291T and N219T/F412S had transglycosylation/hydrolysis ratios about 3- and 8-fold higher, respectively, than that of the wild-type enzyme. This is due to the decreased hydrolytic activity of the mutant rather than increased transglycosylation activity. Interestingly, N291T showed altered regioselectivity, as well as increased transglycosylation products. TLC analysis of the transglycosylation products indicated that N291T retained its ${eta}(1,3)$ regioselectivity, but lost its ${eta}(1,4)$ and ${eta}(1,6)$ regioselectivity. The altered regioselectivity of N291T using two other acceptors, esculin and salicin, was also confirmed by TLC. The major transglycosylation products of the wild type and N291T mutant were clearly different. This result suggests that Asn-291 is highly involved in the catalytic mechanism by controlling the transglycosylation reaction.