Overcoming inefficient cellobiose fermentation by cellobiose phosphorylase in the presence of xylose

  • Chomvong, Kulika
  • Kordic, Vesna
  • Li, Xin
  • Bauer, Stefan
  • Gillespie, Abigail E.
  • ... Ha, Suk-Jin
  • 외 4명
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초록

Background: Cellobiose and xylose co-fermentation holds promise for efficiently producing biofuels from plant biomass. Cellobiose phosphorylase (CBP), an intracellular enzyme generally found in anaerobic bacteria, cleaves cellobiose to glucose and glucose-1-phosphate, providing energetic advantages under the anaerobic conditions required for large-scale biofuel production. However, the efficiency of CBP to cleave cellobiose in the presence of xylose is unknown. This study investigated the effect of xylose on anaerobic CBP-mediated cellobiose fermentation by Saccharomyces cerevisiae. Results: Yeast capable of fermenting cellobiose by the CBP pathway consumed cellobiose and produced ethanol at rates 61% and 42% slower, respectively, in the presence of xylose than in its absence. The system generated significant amounts of the byproduct 4-O-beta-D-glucopyranosyl-D-xylose (GX), produced by CBP from glucose-1-phosphate and xylose. In vitro competition assays identified xylose as a mixed-inhibitor for cellobiose phosphorylase activity. The negative effects of xylose were effectively relieved by efficient cellobiose and xylose co-utilization. GX was also shown to be a substrate for cleavage by an intracellular beta-glucosidase. Conclusions: Xylose exerted negative impacts on CBP-mediated cellobiose fermentation by acting as a substrate for GX byproduct formation and a mixed-inhibitor for cellobiose phosphorylase activity. Future efforts will require efficient xylose utilization, GX cleavage by a beta-glucosidase, and/or a CBP with improved substrate specificity to overcome the negative impacts of xylose on CBP in cellobiose and xylose co-fermentation.

키워드

CellobioseCellobiose phosphorylaseGlucopyranosyl-xyloseInhibitionXyloseENGINEERED SACCHAROMYCES-CEREVISIAEYEAST HEXOSE TRANSPORTERSCELLODEXTRIN TRANSPORTERSSPECIFICITYPHOSPHOROLYSISCONSTRUCTIONMETABOLISMEXPRESSIONBENEFITSCELLS
제목
Overcoming inefficient cellobiose fermentation by cellobiose phosphorylase in the presence of xylose
저자
Chomvong, KulikaKordic, VesnaLi, XinBauer, StefanGillespie, Abigail E.Ha, Suk-JinOh, Eun JoongGalazka, Jonathan M.Jin, Yong-SuCate, Jamie H. D.
DOI
10.1186/1754-6834-7-85
발행일
2014-06-07
유형
Article
저널명
Biotechnology for Biofuels
7