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β-Mannanase-catalyzed synthesis of alkyl mannooligosides

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논문

β-Mannanase-catalyzed synthesis of alkyl mannooligosides

학술지

Applied microbiology and biotechnology

저자명

Morrill, Johan; Må nberger, Anna; Rosengren, Anna; Naidjonoka, Polina; von Freiesleben, Pernille; Krogh, Kristian B. R. M.; Bergquist, Karl-Erik; Nylander, Tommy; Karlsson, Eva Nordberg; Adlercreutz, Patrick; Stå lbrand, Henrik

초록

<P>&beta;-Mannanases catalyze the conversion and modification of &beta;-mannans and may, in addition to hydrolysis, also be capable of transglycosylation which can result in enzymatic synthesis of novel glycoconjugates. Using alcohols as glycosyl acceptors (alcoholysis), &beta;-mannanases can potentially be used to synthesize alkyl glycosides, biodegradable surfactants, from renewable &beta;-mannans. In this paper, we investigate the synthesis of alkyl mannooligosides using glycoside hydrolase family 5 &beta;-mannanases from the fungi <I>Trichoderma reesei</I> (<I>Tr</I>Man5A and <I>Tr</I>Man5A-R171K) and <I>Aspergillus nidulans</I> (<I>An</I>Man5C). To evaluate &beta;-mannanase alcoholysis capacity, a novel mass spectrometry-based method was developed that allows for relative comparison of the formation of alcoholysis products using different enzymes or reaction conditions. Differences in alcoholysis capacity and potential secondary hydrolysis of alkyl mannooligosides were observed when comparing alcoholysis catalyzed by the three &beta;-mannanases using methanol or 1-hexanol as acceptor. Among the three &beta;-mannanases studied, <I>Tr</I>Man5A was the most efficient in producing hexyl mannooligosides with 1-hexanol as acceptor. Hexyl mannooligosides were synthesized using <I>Tr</I>Man5A and purified using high-performance liquid chromatography. The data suggests a high selectivity of <I>Tr</I>Man5A for 1-hexanol as acceptor over water. The synthesized hexyl mannooligosides were structurally characterized using nuclear magnetic resonance, with results in agreement with their predicted &beta;-conformation. The surfactant properties of the synthesized hexyl mannooligosides were evaluated using tensiometry, showing that they have similar micelle-forming properties as commercially available hexyl glucosides. The present paper demonstrates the possibility of using &beta;-mannanases for alkyl glycoside synthesis and increases the potential utilization of renewable &beta;-mannans.</P><P><B>Electronic supplementary material</B></P><P>The online version of this article (10.1007/s00253-018-8997-2) contains supplementary material, which is available to authorized users.</P>

발행연도

2018

발행기관

Springer Berlin Heidelberg

라이선스

cc-by

ISSN

0175-7598

ISSN

1432-0614

102

12

페이지

pp.5149-5163

주제어

β-Mannanase; Transglycosylation; Alcoholysis; Alkyl glycoside; Surfactant

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1 2023-12-11
2 2023-12-11

논문; 2018-04-22

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