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Production of d-xylonic acid from hemicellulose using artificial enzyme complexes

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논문

Production of d-xylonic acid from hemicellulose using artificial enzyme complexes

학술지

Journal of microbiology and biotechnology

저자명

Lee, Charles C.; Kibblewhite, Rena E.; Paavola, Chad D.; Orts, William J.; Wagschal, Kurt

초록

Lignocellulosic biomass represents a potentially large resource to supply the world's fuel and chemical feedstocks. Enzymatic bioconversion of this substrate offers a reliable strategy for accessing this material under mild reaction conditions. Owing to the complex nature of lignocellulose, many different enzymatic activities are required to function in concert to perform efficient transformation. In nature, large multienzyme complexes are known to effectively hydrolyze lignocellulose into constituent monomeric sugars. We created artificial complexes of enzymes, called rosettazymes, in order to hydrolyze glucuronoxylan, a common lignocellulose component, into its cognate sugar <TEX>${\small{D}}$</TEX>-xylose and then further convert the <TEX>${\small{D}}$</TEX>-xylose into <TEX>${\small{D}}$</TEX>-xylonic acid, a Department of Energy top-30 platform chemical. Four different types of enzymes (endoxylanase, <TEX>${\alpha}$</TEX>-glucuronidase, <TEX>${\beta}$</TEX>-xylosidase, and xylose dehydrogenase) were incorporated into the artificial complexes. We demonstrated that tethering our enzymes in a complex resulted in significantly more activity (up to 71%) than the same amount of enzymes free in solution. We also determined that varying the enzyme composition affected the level of complex-related activity enhancement as well as overall yield.

발행연도

2017

발행기관

The Korean Society for Microbiology and Biotechnology

ISSN

1017-7825

ISSN

1738-8872

27

1

페이지

pp.77-83

주제어

Lignocellulose; multienzyme assembly; bioconversion; glucuronoxylan; xylonic acid

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1 2023-12-11

논문; 2017-01-28

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