Metabolic Engineering of <i>Komagataella phaffii</i> for Xylose Utilization from Cellulosic Biomass
  • Park, Jongbeom
  • Park, Sujeong
  • Evelina, Grace
  • Kim, Sunghee
  • Jin, Yong-Su
  • ... Kim, In Jung
  • 외 2명
Citations

WEB OF SCIENCE

5
Citations

SCOPUS

5

초록

Cellulosic biomass hydrolysates are rich in glucose and xylose, but most microorganisms, including Komagataella phaffii, are unable to utilize xylose effectively. To address this limitation, we engineered a K. phaffii strain optimized for xylose metabolism through the xylose oxidoreductase pathway and promoter optimization. A promoter library with varying strengths was used to fine-tune the expression levels of the XYL1, XYL2, and XYL3 genes, resulting in a strain with a strong promoter for XYL2 and weaker promoters for XYL1 and XYL3. This engineered strain exhibited superior growth, achieving 14 g cells/L and a maximal growth rate of 0.4 g cells/L-h in kenaf hydrolysate, outperforming a native strain by 17%. This study is the first to report the introduction of the xylose oxidoreductase pathway into K. phaffii, demonstrating its potential as an industrial platform for producing yeast protein and other products from cellulosic biomass.

키워드

<italic>Komagataella phaffii</italic>xylose metabolismpromoter librarylignocellulosekenafRECOMBINANT SACCHAROMYCES-CEREVISIAEPICHIA-PASTORISPROTEIN EXPRESSIONXYLITOL DEHYDROGENASEFERMENTATIONCULTIVATIONXYL2IMPROVEMENTPROMOTERSPATHWAY
제목
Metabolic Engineering of <i>Komagataella phaffii</i> for Xylose Utilization from Cellulosic Biomass
저자
Park, JongbeomPark, SujeongEvelina, GraceKim, SungheeJin, Yong-SuChi, Won-JaeKim, In JungKim, Soo Rin
DOI
10.3390/molecules29235695
발행일
2024-12
유형
Article
저널명
Molecules
29
23