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A novel agarolytic β-galactosidase acts on agarooligosaccharides for complete hydrolysis of agarose into monomers

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논문

A novel agarolytic β-galactosidase acts on agarooligosaccharides for complete hydrolysis of agarose into monomers

학술지

Applied and environmental microbiology

저자명

Lee, Chan Hyoung; Kim, Hee Taek; Yun, Eun Ju; Lee, Ah Reum; Kim, Sa Rang; Kim, Jae-Han; Choi, In-Geol; Kim, Kyoung Heon

초록

<P>Marine red macroalgae have emerged to be renewable biomass for the production of chemicals and biofuels, because carbohydrates that form the major component of red macroalgae can be hydrolyzed into fermentable sugars. The main carbohydrate in red algae is agarose, and it is composed of <SMALL>d</SMALL>-galactose and 3,6-anhydro-<SMALL>l</SMALL>-galactose (AHG), which are alternately bonded by &#x03B2;1-4 and &#x03B1;1-3 linkages. In this study, a novel &#x03B2;-galactosidase that can act on agarooligosaccharides (AOSs) to release galactose was discovered in a marine bacterium (<I>Vibrio</I> sp. strain EJY3); the enzyme is annotated as <I>Vibrio</I> sp. EJY3 agarolytic &#x03B2;-galactosidase (<I>Vej</I>ABG). Unlike the <I>lacZ</I>-encoded &#x03B2;-galactosidase from <I>Escherichia coli</I>, <I>Vej</I>ABG does not hydrolyze common substrates like lactose and can act only on the galactose moiety at the nonreducing end of AOS. The optimum pH and temperature of <I>Vej</I>ABG on an agarotriose substrate were 7 and 35&#x00B0;C, respectively. Its catalytic efficiency with agarotriose was also similar to that with agaropentaose or agaroheptaose. Since agarotriose lingers as the unreacted residual oligomer in the currently available saccharification system using &#x03B2;-agarases and acid prehydrolysis, the agarotriose-hydrolyzing capability of this novel &#x03B2;-galactosidase offers an enormous advantage in the saccharification of agarose or agar in red macroalgae for its use as a biomass feedstock for fermentable sugar production.</P>

발행연도

2014

발행기관

American Society for Microbiology

ISSN

0099-2240

ISSN

1098-5336

80

19

페이지

pp.5965-5973

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

논문; 2014-10-01

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