Engineering Saccharomyces cerevisiae for targeted hydrolysis and fermentation of glucuronoxylan through CRISPR/Cas9 genome editing

被引:0
作者
Jonas L. Ravn
João H.C. Manfrão-Netto
Jana B. Schaubeder
Luca Torello Pianale
Stefan Spirk
Iván F. Ciklic
Cecilia Geijer
机构
[1] Chalmers University of Technology,Department of Life Sciences
[2] Brazilian Biorenewables National Laboratory (LNBR),Brazilian Center for Research in Energy and Materials (CNPEM)
[3] Graz University of Technology,Institute of Bioproducts and Paper Technology (BPTI)
[4] Estación Experimental Agropecuaria Mendoza,undefined
[5] Instituto Nacional de Tecnología Agropecuaria (INTA),undefined
来源
Microbial Cell Factories | / 23卷
关键词
Yeast; Xylan; Xylanase; α-glucuronidase; Metabolic engineering; Co-culture; Microbial cell factories; Consolidated bioprocessing;
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  • [31] de Moraes LMP(2016)PRECOG: a tool for automated extraction and visualization of fitness components in microbial growth phenomics BMC Bioinformatics 17 1-16
  • [32] Torres FAG(2012)GH11 xylanases: Structure/function/properties relationships and applications Biotechnol Adv 30 564-5
  • [33] Cunha JT(2013)The secretory pathway: exploring yeast diversity FEMS Microbiol Rev 37 872-10
  • [34] Soares PO(2016)Enhanced cell-surface display and secretory production of cellulolytic enzymes with Saccharomyces cerevisiae Sed1 signal peptide Biotechnol Bioeng 113 2358-80
  • [35] Romaní A(2022)Burden imposed by Heterologous Protein Production in two major industrial yeast cell factories: identifying sources and mitigation strategies Front Fungal Biology 3 1-76
  • [36] Thevelein JM(2006)Enhanced secretion of heterologous proteins in Pichia pastoris following overexpression of Saccharomyces cerevisiae chaperone proteins Biotechnol Prog 22 1090-14
  • [37] Domingues L(2022)The α-mating factor secretion signals and endogenous signal peptides for recombinant protein secretion in Komagataella Phaffii Biotechnol Biofuels Bioprod 15 1-10
  • [38] Kwak S(2018)Differential bacterial capture and transport preferences facilitate co-growth on dietary xylan in the human gut Nat Microbiol 3 570-78
  • [39] Jin YS(2017)Enhanced direct ethanol production by cofactor optimization of cell surface-displayed xylose isomerase in yeast Biotechnol Prog 33 1068-undefined
  • [40] Claes A(2004)Construction of a xylan-fermenting yeast strain through codisplay of xylanolytic enzymes on the surface of xylose-utilizing Saccharomyces cerevisiae cells Appl Environ Microbiol 70 5407-undefined