Impacts of Magnetic Immobilization on the Recombinant Proteins Structure Produced in Pichia pastoris System

被引:0
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作者
Seyedeh-Masoumeh Taghizadeh
Mohammad Bagher Ghoshoon
Aydin Berenjian
Younes Ghasemi
Ali Dehshahri
Alireza Ebrahiminezhad
机构
[1] Shiraz University of Medical Sciences,Department of Pharmaceutical Biotechnology, School of Pharmacy
[2] Shiraz University of Medical Sciences,Pharmaceutical Sciences Research Center
[3] Shiraz University of Medical Sciences,Biotechnology Research Center
[4] The University of Waikato,School of Engineering, Faculty of Science and Engineering
[5] Shiraz University of Medical Sciences,Department of Medical Nanotechnology, School of Advanced Medical Sciences and Technologies
来源
Molecular Biotechnology | 2021年 / 63卷
关键词
Cell harvesting; Eukaryotic host; Fe; O; nanoparticles; Magnetic separation; Yeast cells;
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学科分类号
摘要
Pichia pastoris expression system was introduced with post-translation process similar to higher eukaryotes. Preliminary studies were performed toward process intensification and magnetic immobilization of this system. In this experiment, effects of magnetic immobilization on the structure of recombinant protein were evaluated. P. pastoris cell which express human serum albumin (HSA) was used as a model. The cells were immobilized with various concentrations of APTES coated magnetite nanoparticles. HSA production was done over 5 days induction and structure of the product was analyzed by UV–vis, fluorescence, and ATR-FTIR spectroscopy. Second derivative deconvolution method was used to analyze the secondary structure of HSA. P. pastoris cell that were immobilized with 0.5 and 1 mg/mL of nanoparticles were produced HSA with intact structure. But immobilization with 2 mg/mL of nanoparticles resulted in some modifications in the secondary structures (i.e., α-helixes and β-turns) of produced HSA. Based on these data, immobilization of P. pastoris cells with 0.5 or 1 mg/mL of nanoparticles is completely efficient for cell harvesting and has any effect on the structure of recombinant product. These findings revealed that decoration of microbial cells with high concentrations of nanoparticles has some impacts on the structure of secretory proteins.
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页码:80 / 89
页数:9
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