Fusion to elastin-like polypeptide increases production of bioactive human IFN-γ in tobacco
Autor: | Mokhtar Jalali-Javaran, Raheem Haddad, Mostafa Valizadeh, Ebrahim Dorani-Uliaie, Reza Heidari-Japelaghi |
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Rok vydání: | 2020 |
Předmět: |
0106 biological sciences
0301 basic medicine Enteropeptidase Glycosylation Recombinant Fusion Proteins Biology 01 natural sciences law.invention Interferon-gamma 03 medical and health sciences chemistry.chemical_compound N-linked glycosylation law Tobacco Genetics Humans Endoplasmic reticulum Biological activity Plants Genetically Modified Subcellular localization Fusion protein 030104 developmental biology chemistry Biochemistry Recombinant DNA Animal Science and Zoology Peptides Agronomy and Crop Science 010606 plant biology & botany Biotechnology |
Zdroj: | Transgenic Research. 29:381-394 |
ISSN: | 1573-9368 0962-8819 |
DOI: | 10.1007/s11248-020-00205-y |
Popis: | The plant-based expression systems are now accredited as bioreactors for the high production of various biopharmaceuticals. However, low levels of agglomeration and the absence of effective procedures for purification of recombinant proteins have remained two essential obstacles in molecular farming. In this research, we have studied the production of human interferon gamma (hIFN-γ) in tobacco and analyzed the effects of elastin-like polypeptide (ELP) tag and subcellular localization on its accumulation. We report a remarkable enhancement of accumulation of the fusion proteins versus the corresponding unfused hIFN-γ proteins. Furthermore, the hIFN-γ (with and without ELP) accumulated to higher levels in the endoplasmic reticulum. The ELP fusion proteins were successfully recovered from total soluble protein with adding 2.75 M NaCl and three rounds of inverse transition cycling (ITC). The hIFN-γ was also separated from ELP with Enterokinase cleavage of the fusion protein and recovered by ITC. Inverse transition analysis indicated that the hIFN-γ-ELP variants aggregate above their inverse transition temperature and at high ionic strength. Investigation of glycosylation revealed that fused or unfused hIFN-γ proteins are N-glycosylated in different cellular locations. Moreover, N-glycosylation analysis and bioassay showed that fusion to ELP does not disturb glycosylation process and antiviral activity of hIFN-γ. |
Databáze: | OpenAIRE |
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