Development and characterization of vectors for tunable expression of both xylose-regulated and constitutive gene expression in Saccharomyces yeasts

被引:8
作者
Hector, Ronald E. [1 ]
Mertens, Jeffrey A. [1 ]
Nichols, Nancy N. [1 ]
机构
[1] ARS, Bioenergy Res Unit, Natl Ctr Agr Utilizat Res, USDA, 1815 N Univ St, Peoria, IL 61604 USA
基金
美国农业部;
关键词
Xylose inducible; Promoter; Saccharomyces; Terminator; Gene expression; Optimization; TERMINATOR REGIONS; CEREVISIAE; PROMOTER; FERMENTATION; POLYADENYLATION; INCREASE; BIAS;
D O I
10.1016/j.nbt.2019.06.006
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Synthetic hybrid promoters for xylose-regulated gene expression in the yeast Saccharomyces cerevisiae have recently been developed. However, the narrow range of expression level from these new hybrid promoters limits their utility for pathway optimization in engineered strains. To expand the range of xylose-regulated gene expression, a series of expression vectors was created using a xylose derepressible promoter (P-XYL) and varied termination regions from several S. cerevisiae genes. The new set of vectors showed a 26-fold range of gene expression under inducing conditions and a 13-fold average induction due to xylose. In the presence of the XylR repressor, gene expression was very sensitive to xylose concentration and full induction was observed with 0.10 g/L xylose. In the absence of XylR, gene expression from the vector set did not require xylose and was constitutive over a similar 26-fold range of expression. These results show that the vectors are extremely versatile for constitutive expression as well as for fine-tuning both the timing of gene expression and expression level using xylose as an inexpensive inducer.
引用
收藏
页码:16 / 23
页数:8
相关论文
共 39 条
[31]  
Sambrook J, 2001, MOL CLONING LAB MANU, V3rd
[32]   THE CODON ADAPTATION INDEX - A MEASURE OF DIRECTIONAL SYNONYMOUS CODON USAGE BIAS, AND ITS POTENTIAL APPLICATIONS [J].
SHARP, PM ;
LI, WH .
NUCLEIC ACIDS RESEARCH, 1987, 15 (03) :1281-1295
[33]   SEQUENCE AND PROMOTER ANALYSIS OF THE HIGHLY EXPRESSED TEF GENE OF THE FILAMENTOUS FUNGUS ASHBYA-GOSSYPII [J].
STEINER, S ;
PHILIPPSEN, P .
MOLECULAR & GENERAL GENETICS, 1994, 242 (03) :263-271
[34]   Regulation of D-xylose metabolism in Caulobacter crescentus by a LacI-type repressor [J].
Stephens, Craig ;
Christen, Beat ;
Watanabe, Kelly ;
Fuchs, Thomas ;
Jenal, Urs .
JOURNAL OF BACTERIOLOGY, 2007, 189 (24) :8828-8834
[35]   Cloning and characterization of a panel of constitutive promoters for applications in pathway engineering in Saccharomyces cerevisiae [J].
Sun, Jie ;
Shao, Zengyi ;
Zhao, Hua ;
Nair, Nikhil ;
Wen, Fei ;
Xu, Jian-He ;
Zhao, Huimin .
BIOTECHNOLOGY AND BIOENGINEERING, 2012, 109 (08) :2082-2092
[36]   PROPERTIES OF THE NAD(P)H-DEPENDENT XYLOSE REDUCTASE FROM THE XYLOSE-FERMENTING YEAST PICHIA-STIPITIS [J].
VERDUYN, C ;
VANKLEEF, R ;
FRANK, J ;
SCHREUDER, H ;
VANDIJKEN, JP ;
SCHEFFERS, WA .
BIOCHEMICAL JOURNAL, 1985, 226 (03) :669-677
[37]   Design and engineering of intracellular-metabolite-sensing/regulation gene circuits in Saccharomyces cerevisiae [J].
Wang, Meng ;
Li, Sijin ;
Zhao, Huimin .
BIOTECHNOLOGY AND BIOENGINEERING, 2016, 113 (01) :206-215
[38]   A Genome-Wide Activity Assessment of Terminator Regions in Saccharomyces cerevisiae Provides a "Terminatome" Toolbox [J].
Yamanishi, Mamoru ;
Ito, Yoichiro ;
Kintaka, Reiko ;
Imamura, Chie ;
Katahira, Satoshi ;
Ikeuchi, Akinori ;
Moriya, Hisao ;
Matsuyama, Takashi .
ACS SYNTHETIC BIOLOGY, 2013, 2 (06) :337-347
[39]   Reprogramming Yeast Metabolism from Alcoholic Fermentation to Lipogenesis [J].
Yu, Tao ;
Zhou, Yongjin J. ;
Huang, Mingtao ;
Liu, Quanli ;
Pereira, Rui ;
David, Florian ;
Nielsen, Jens .
CELL, 2018, 174 (06) :1549-+