Improving expression and assembly of difficult-to-express heterologous proteins in Saccharomyces cerevisiae by culturing at a sub-physiological temperature

被引:9
作者
So, Kum-Kang [1 ]
Le, Ngoc My Tieu [2 ]
Nguyen, Ngoc-Luong [3 ]
Kim, Dae-Hyuk [1 ,2 ]
机构
[1] Jeonbuk Natl Univ, Inst Mol Biol & Genet, Dept Mol Biol, Jeonju 54896, Jeonrabug Do, South Korea
[2] Jeonbuk Natl Univ, Dept Bioact Mat Sci, Jeonju 54896, Jeonrabug Do, South Korea
[3] Hue Univ, Coll Sci, Dept Biol, Hue 530000, Vietnam
基金
英国科研创新办公室; 新加坡国家研究基金会;
关键词
Saccharomyces cerevisiae; Expression temperature; LTB-fusion protein; GREEN FLUORESCENT PROTEIN; PICHIA-PASTORIS; ESCHERICHIA-COLI; GENE-EXPRESSION; YEAST SYSTEMS; SECRETION; VACCINE; YIELD; TERMINATORS; INCREASE;
D O I
10.1186/s12934-023-02065-7
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
BackgroundEscherichia coli heat labile toxin B subunit (LTB) is one of the most popular oral vaccine adjuvants and intestine adsorption enhancers. It is often expressed as a fusion partner with target antigens to enhance their immunogenicity as well as gut absorbability. However, high expression levels of a fusion protein are critical to the outcome of immunization experiments and the success of subsequent vaccine development efforts. In order to improve the expression and functional assembly of LTB-fusion proteins using Saccharomyces cerevisiae, we compared their expression under culture conditions at a sub-physiological temperature 20 degrees C with their expression under a standard 30 degrees C.ResultsThe assembled expression of LTB-EDIII2 (LTB fused to the envelope domain III (EDIII) of Dengue virus serotype 2), which was expressed at the level of 20 mu g/L in our previous study, was higher when the expression temperature was 20 degrees C as opposed to 30 degrees C. We also tested whether the expression and functional assembly of a difficult-to-express LTB fusion protein could be increased. The assembled expression of the difficult-to-express LTB-VP1 fusion protein (LTB fused to VP1 antigen of Foot-and-Mouth Disease Virus) dramatically increased, although the total amount of expressed protein was still lower than that of LTB-EDIII2. Slight but significant increase in the expression of well-known reporter protein eGFP, which has previously been shown to be increased by cultivation at 20 degrees C, was also observed in our expression system. As no significant changes in corresponding transcripts levels and cell growth were observed between 20 degrees C and 30 degrees C, we infer that translation and post-translational assembly are responsible for these enhancements.ConclusionsThe effects of lowering the expression temperature from 30 degrees C to 20 degrees C on protein expression and folding levels in S. cerevisiae, using several proteins as models, are reported. When heterologous proteins are expressed at 20 degrees C, a greater amount of (specially, more assembled) functional proteins accumulated than at 30 degrees C. Although further studies are required to understand the molecular mechanisms, our results suggest that lowering the expression temperature is a convenient strategy for improving the expression of relatively complexly structured and difficult-to-express proteins in S. cerevisiae.
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页数:12
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共 67 条
  • [1] Cold response in Saccharomyces cerevisiae:: new functions for old mechanisms
    Aguilera, Jaime
    Randez-Gil, Francisca
    Antonio Prieto, Jose
    [J]. FEMS MICROBIOLOGY REVIEWS, 2007, 31 (03) : 327 - 341
  • [2] Evaluation of cell-surface displayed synthetic consensus dengue EDIII cells as a potent oral vaccine candidate
    Bal, Jyotiranjan
    Jung, Hee-Young
    Nguyen, Luong Ngoc
    Park, Jisang
    Jang, Yong-Suk
    Kim, Dae-Hyuk
    [J]. MICROBIAL CELL FACTORIES, 2018, 17
  • [3] Comparative immunogenicity of preparations of yeast-derived dengue oral vaccine candidate
    Bal, Jyotiranjan
    Nguyen Ngoc Luong
    Park, Jisang
    Song, Ki-Duk
    Jang, Yong-Suk
    Kim, Dae-Hyuk
    [J]. MICROBIAL CELL FACTORIES, 2018, 17
  • [4] Controlling promoter strength and regulation in Saccharomyces cerevisiae using synthetic hybrid promoters
    Blazeck, John
    Garg, Rishi
    Reed, Ben
    Alper, Hal S.
    [J]. BIOTECHNOLOGY AND BIOENGINEERING, 2012, 109 (11) : 2884 - 2895
  • [5] YEAST SYSTEMS FOR THE COMMERCIAL PRODUCTION OF HETEROLOGOUS PROTEINS
    BUCKHOLZ, RG
    GLEESON, MAG
    [J]. BIO-TECHNOLOGY, 1991, 9 (11): : 1067 - 1072
  • [6] Bui K., 1990, Yeast technology., P241
  • [7] Immune evaluation of a Saccharomyces cerevisiae-based oral vaccine against Helicobacter pylori in mice
    Cen, Qianhong
    Gao, Tong
    Ren, Yi
    Lu, Xin
    Lei, Han
    [J]. HELICOBACTER, 2021, 26 (01)
  • [8] Porcine Immunoglobulin Fc Fused P30/P54 Protein of African Swine Fever Virus Displaying on Surface of S. cerevisiae Elicit Strong Antibody Production in Swine
    Chen, Chen
    Hua, Deping
    Shi, Jingxuan
    Tan, Zheng
    Zhu, Min
    Tan, Kun
    Zhang, Lilin
    Huang, Jinhai
    [J]. VIROLOGICA SINICA, 2021, 36 (02) : 207 - 219
  • [9] Fusion protein linkers: Property, design and functionality
    Chen, Xiaoying
    Zaro, Jennica L.
    Shen, Wei-Chiang
    [J]. ADVANCED DRUG DELIVERY REVIEWS, 2013, 65 (10) : 1357 - 1369
  • [10] The Mucosal Vaccine Adjuvant LT(R192G/L211A) or dmLT
    Clements, John D.
    Norton, Elizabeth B.
    [J]. MSPHERE, 2018, 3 (04):