Metabolic engineering of Saccharomyces cerevisiae

被引:275
作者
Ostergaard, S [1 ]
Olsson, L [1 ]
Nielsen, J [1 ]
机构
[1] Tech Univ Denmark, Dept Biotechnol, Ctr Proc Biotechnol, DK-2800 Lyngby, Denmark
关键词
D O I
10.1128/MMBR.64.1.34-50.2000
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Comprehensive knowledge regarding Saccharomyces cerevisiae has accumulated over time, and today S. cerevisiae serves as a widley used biotechnological production organism as well as a eukaryotic model system. The high transformation efficiency, in addition to the availability of the the complete yeast genome sequence has facilitated genetic manipulation of this microorganism, and new approaches are constantly being taken to metabolicially engineer this organism in oder to suit specific needs. In this paper; strategies and concepts for metabolic engineering are discussed and several examples based upon selected studies involving S, cerevisiae are reviewed. The many different studies of metabolic engineering using this organism illustrate all the categories of this multidisciplinary field: extension of substrate range, improvements of producitivity and yield, elimination of byproduct formation, improvement of process performance, improvements of cellular properties, and extension of product range including heterologous protein production.
引用
收藏
页码:34 / +
页数:19
相关论文
共 170 条
[111]   CONSTRUCTION OF BREWERS YEASTS SECRETING FUNGAL ENDO-BETA-GLUCANASE [J].
PENTTILA, ME ;
SUIHKO, ML ;
LEHTINEN, U ;
NIKKOLA, M ;
KNOWLES, JKC .
CURRENT GENETICS, 1987, 12 (06) :413-420
[112]   PROTEIN-PROTEIN INTERACTIONS - METHODS FOR DETECTION AND ANALYSIS [J].
PHIZICKY, EM ;
FIELDS, S .
MICROBIOLOGICAL REVIEWS, 1995, 59 (01) :94-123
[113]   THE SECRETION AND POST TRANSLATIONAL MODIFICATION OF INTERFERONS FROM SACCHAROMYCES-CEREVISIAE [J].
PIGGOTT, JR ;
WATSON, MEE ;
DOEL, SM ;
GOODEY, AR ;
CARTER, BLA .
CURRENT GENETICS, 1987, 12 (08) :561-567
[114]   DEVELOPMENT OF METABOLICALLY ENGINEERED SACCHAROMYCES-CEREVISIAE CELLS FOR THE PRODUCTION OF LACTIC-ACID [J].
PORRO, D ;
BRAMBILLA, L ;
RANZI, BM ;
MARTEGANI, E ;
ALBERGHINA, L .
BIOTECHNOLOGY PROGRESS, 1995, 11 (03) :294-298
[115]  
Remize F, 1999, APPL ENVIRON MICROB, V65, P143
[116]   CATABOLITE INACTIVATION OF THE YEAST MALTOSE TRANSPORTER OCCURS IN THE VACUOLE AFTER INTERNALIZATION BY ENDOCYTOSIS [J].
RIBALLO, E ;
HERWEIJER, M ;
WOLF, DH ;
LAGUNAS, R .
JOURNAL OF BACTERIOLOGY, 1995, 177 (19) :5622-5627
[117]  
RIZZI M, 1988, APPL MICROBIOL BIOT, V29, P148
[118]  
Rizzi M, 1997, BIOTECHNOL BIOENG, V55, P592
[119]   A KINETIC-STUDY OF THE NAD+-XYLITOL-DEHYDROGENASE FROM THE YEAST PICHIA-STIPITIS .6. [J].
RIZZI, M ;
HARWART, K ;
BUITHANH, NA ;
DELLWEG, H .
JOURNAL OF FERMENTATION AND BIOENGINEERING, 1989, 67 (01) :25-30
[120]   UTILIZATION OF SUGAR-CANE BAGASSE HEMICELLULOSIC HYDROLYSATE BY PICHIA-STIPITIS FOR THE PRODUCTION OF ETHANOL [J].
ROBERTO, IC ;
LACIS, LS ;
BARBOSA, MFS ;
DEMANCILHA, IM .
PROCESS BIOCHEMISTRY, 1991, 26 (01) :15-21