Protein secretion in Pichia pastoris and advances in protein production

被引:0
作者
Leonardo M. Damasceno
Chung-Jr Huang
Carl A. Batt
机构
[1] Centro de Pesquisas René Rachou/FIOCRUZ,Department of Microbiology
[2] Cornell University,Cell Science and Technology
[3] AMGEN Inc,undefined
来源
Applied Microbiology and Biotechnology | 2012年 / 93卷
关键词
Recombinant protein secretion; Unfolded protein response; Protein folding;
D O I
暂无
中图分类号
学科分类号
摘要
Yeast expression systems have been successfully used for over 20 years for the production of recombinant proteins. With the growing interest in recombinant protein expression for various uses, yeast expression systems, such as the popular Pichia pastoris, are becoming increasingly important. Although P. pastoris has been successfully used in the production of many secreted and intracellular recombinant proteins, there is still room for improvement of this expression system. In particular, secretion of recombinant proteins is still one of the main reasons for using P. pastoris. Therefore, endoplasmic reticulum protein folding, correct glycosylation, vesicular transport to the plasma membrane, gene dosage, secretion signal sequences, and secretome studies are important considerations for improved recombinant protein production.
引用
收藏
页码:31 / 39
页数:8
相关论文
共 50 条
  • [31] Endoplasmic stress sensor Ire1 is involved in cytosolic/nuclear protein quality control in Pichia pastoris cells independent of HAC1
    Fauzee, Yasmin Nabilah Binti Mohd
    Yoshida, Yuki
    Kimata, Yukio
    FRONTIERS IN MICROBIOLOGY, 2023, 14
  • [32] Activation of the Unfolded Protein Response via Co-expression of the HAC1i Gene Enhances Expression of Recombinant Elastase in Pichia pastoris
    Minghai Han
    Weixian Wang
    Jianli Zhou
    Xun Gong
    Cunbin Xu
    Yinfeng Li
    Qiang Li
    Biotechnology and Bioprocess Engineering, 2020, 25 : 302 - 307
  • [33] Activation of the Unfolded Protein Response via Co-expression of the HAC1i Gene Enhances Expression of Recombinant Elastase in Pichia pastoris
    Han, Minghai
    Wang, Weixian
    Zhou, Jianli
    Gong, Xun
    Xu, Cunbin
    Li, Yinfeng
    Li, Qiang
    BIOTECHNOLOGY AND BIOPROCESS ENGINEERING, 2020, 25 (02) : 302 - 307
  • [34] Efficient secretion of lipase r27RCL in Pichia pastoris by enhancing the disulfide bond formation pathway in the endoplasmic reticulum
    Sha, Chong
    Yu, Xiao-Wei
    Zhang, Meng
    Xu, Yan
    JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2013, 40 (11) : 1241 - 1249
  • [35] Improved secretion of the cancer-testis antigen SSX2 in Pichia pastoris by deletion of its nuclear localization signal
    Chung-Jr Huang
    Kyle A. Anderson
    Leonardo M. Damasceno
    Gerd Ritter
    Lloyd J. Old
    Carl A. Batt
    Applied Microbiology and Biotechnology, 2010, 86 : 243 - 253
  • [36] Hac1p homologues from higher eukaryotes can improve the secretion of heterologous proteins in the yeast Pichia pastoris
    Bankefa, Olufemi Emmanuel
    Wang, Meiyu
    Zhu, Taicheng
    Li, Yin
    BIOTECHNOLOGY LETTERS, 2018, 40 (07) : 1149 - 1156
  • [37] Hac1p homologues from higher eukaryotes can improve the secretion of heterologous proteins in the yeast Pichia pastoris
    Olufemi Emmanuel Bankefa
    Meiyu Wang
    Taicheng Zhu
    Yin Li
    Biotechnology Letters, 2018, 40 : 1149 - 1156
  • [38] Fate of the UPR marker protein Kar2/Bip and autophagic processes in fed-batch cultures of secretory insulin precursor producing Pichia pastoris
    Roth, Gustavo
    Vanz, Ana Leticia
    Luensdorf, Heinrich
    Nimtz, Manfred
    Rinas, Ursula
    MICROBIAL CELL FACTORIES, 2018, 17
  • [39] INDUCTION AND MEASUREMENT OF UPR AND OSMOTIC STRESS IN THE YEAST PICHIA PASTORIS
    Dragosits, Martin
    Mattanovich, Diethard
    Gasser, Brigitte
    METHODS IN ENZYMOLOGY: UNFOLDED PROTEIN RESPONSE AND CELLULAR STRESS, VOL 489, PT A, 2011, 489 : 165 - 188
  • [40] Toxic misfolding of Arabidopsis cellulases in the secretory pathway of Pichia pastoris
    Tawde, Mangala D.
    Freimuth, Paul
    PROTEIN EXPRESSION AND PURIFICATION, 2012, 85 (02) : 211 - 217