Limiting factors in Escherichia coli fed-batch production of recombinant proteins

被引:132
|
作者
Sandén, AM
Prytz, I
Tubulekas, I
Förberg, C
Le, H
Hektor, A
Neubauer, P
Pragai, Z
Harwood, C
Ward, A
Picon, A
de Mattos, JT
Postma, P
Farewell, A
Nyström, T
Reeh, S
Pedersen, S
Larsson, G [1 ]
机构
[1] Swedish Ctr Bioproc Technol, Stockholm Ctr Phys Astron & Biotechnol, SE-10691 Stockholm, Sweden
[2] Biovitrum AB, SE-11257 Stockholm, Sweden
[3] Newcastle Univ, Sch Med, Dept Microbiol Virol & Immunol, Newcastle Upon Tyne NE2 4HH, Tyne & Wear, England
[4] Univ Halle Wittenberg, Fachbereich Biochem Biotechnol, Inst Biotechnol, D-06120 Halle An Der Saale, Germany
[5] Univ Gothenburg, Dept Gen & Marine Microbiol, SE-41390 Gothenburg, Sweden
[6] Univ Amsterdam, EC Slater Inst, NL-1018 TV Amsterdam, Netherlands
[7] Univ Copenhagen, Dept Mol Cell Biol, DK-1353 Copenhagen, Denmark
关键词
recombinant protein production; fed-batch; specific growth rate; feed profile; induction; mRNA; transcription; translation; acetic acid formation; by-product formation; ppGpp;
D O I
10.1002/bit.10457
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Fed-batch production of recombinant beta-galactosidase in E. coli was studied with respect to the specific growth rate at induction. The cultivations were designed to induce protein production by IPTG at a glucose feed rate corresponding to high (mu = 0.5 h(-1)) or low (mu = 0.1 h(-1)) specific growth rate. Protein production rate was approximately 100% higher at the higher specific growth rate, resulting in the accumulation of beta-galactosidase up to 30% of the total cell protein. Transcription analysis showed that beta-galactosidase-specific messenger RNA was immediately formed after induction (<5 min), but the amount was the same in both cases and was thus not the initial limiting factor. The content of ribosomes, as represented by rRNA, rapidly decreased with specific growth rate from a relative level of 100%, at the high specific growth rate, to 20% at the low specific growth rate. At high specific growth rate, ribosomes were additionally degraded upon induction due to the high production level. Translation therefore seemed to be the initial limiting factor of the protein synthesis capacity. The alarmone guanosine tetraphosphate increased at both high and low feed level inductions, indicating an induction-forced starvation of charged tRNA and/or glucose. The altered physiological status was also detected by the formation of acetic acid. However, the higher production rate resulted in high-level accumulation of acetic acid, which was absent at low feed rate production. Acetic acid production is thus coupled to the high product formation rate and is proposed to be due either to a precursor drain of Krebs cycle intermediates and a time lag before induction of the glyoxalate shunt, or to single amino acid overflow, since the model product is relatively poor in glycin and alanin. In conclusion, it is proposed that production at high specific growth rate becomes precursor-limited, while production at low specific growth rate is carbon- and/or energy-limited. (C) 2002 Wiley Periodicals, Inc.
引用
收藏
页码:158 / 166
页数:9
相关论文
共 50 条
  • [31] RECOMBINANT TRYPSIN PRODUCTION IN HIGH CELL-DENSITY FED-BATCH CULTURES IN ESCHERICHIA-COLI
    YEE, L
    BLANCH, HW
    BIOTECHNOLOGY AND BIOENGINEERING, 1993, 41 (08) : 781 - 790
  • [32] Production of poly(4-hydroxybutyric acid) by fed-batch cultures of recombinant strains of Escherichia coli
    Shuishan Song
    Silke Hein
    Alexander Steinbüchel
    Biotechnology Letters, 1999, 21 : 193 - 197
  • [33] Fed-batch fermentations of recombinant Escherichia coli to produce Bacillus macerans CGTase
    Park, YC
    Kim, CS
    Kim, CI
    Choi, KH
    Seo, JH
    JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 1997, 7 (05) : 323 - 328
  • [34] RECOMBINANT Erwinia carotovora L-ASPARAGINASE II PRODUCTION IN Escherichia coli FED-BATCH CULTURES
    Roth, G.
    Nunes, J. E. S.
    Rosado, L. A.
    Bizarro, C. V.
    Volpato, G.
    Nunes, C. P.
    Renard, G.
    Basso, L. A.
    Santos, D. S.
    Chies, J. M.
    BRAZILIAN JOURNAL OF CHEMICAL ENGINEERING, 2013, 30 (02) : 245 - 256
  • [35] Improved Production of a Bioadhesive Precursor Protein by Fed-Batch Cultivation of a Recombinant Escherichia coli with a pLysS Vector
    Yeon Chul Kim
    Sunhoon Kwon
    Sang Yup Lee
    Ho Nam Chang
    Biotechnology Letters, 1998, 20 : 799 - 803
  • [36] Effects of temperature shift strategies on human preproinsulin production in the fed-batch fermentation of recombinant Escherichia coli
    Son, Young-Jin
    Park, Kyong-Hee
    Lee, Sang-Yong
    Oh, Sung-Jin
    Kim, Chang-Kyu
    Choi, Byoung-Taek
    Park, Yong-Cheof
    Seo, Jin-Ho
    BIOTECHNOLOGY AND BIOPROCESS ENGINEERING, 2007, 12 (05) : 556 - 561
  • [37] PHYSIOLOGICALLY MOTIVATED STRATEGIES FOR CONTROL OF THE FED-BATCH CULTIVATION OF RECOMBINANT ESCHERICHIA-COLI FOR PHENYLALANINE PRODUCTION
    KONSTANTINOV, KB
    NISHIO, N
    SEKI, T
    YOSHIDA, T
    JOURNAL OF FERMENTATION AND BIOENGINEERING, 1991, 71 (05): : 350 - 355
  • [38] Production of poly(4-hydroxybutyric acid) by fed-batch cultures of recombinant strains of Escherichia coli
    Song, SS
    Hein, S
    Steinbüchel, A
    BIOTECHNOLOGY LETTERS, 1999, 21 (03) : 193 - 197
  • [39] Method for high-efficiency fed-batch cultures of recombinant Escherichia coli
    Caldwell, Thomas P.
    Synoground, Benjamin F.
    Harcum, Sarah W.
    RECOMBINANT PROTEIN EXPRESSION: PROKARYOTIC HOSTS AND CELL-FREE SYSTEMS, 2021, 659 : 189 - 217
  • [40] Improved production of a bioadhesive precursor protein by fed-batch cultivation of a recombinant Escherichia coli with a pLysS vector
    Kim, YC
    Kwon, S
    Lee, SY
    Chang, HN
    BIOTECHNOLOGY LETTERS, 1998, 20 (08) : 799 - 803