Your browser doesn't support javascript.
Show: 20 | 50 | 100
Results 1 - 1 de 1
Filter
Add filters

Database
Language
Document Type
Year range
1.
Ukrainian Biochemical Journal ; 93(6):31-45, 2021.
Article in English | Scopus | ID: covidwho-1634279

ABSTRACT

The quickly emerged global COVID-19 pandemic raised a desperate need in the development of pro-tecting vaccines targeting this disease. Therefore, a generation of effective producers of recombinant SARS-CoV-2 proteins became an urgent task. Its resolving contributes to the study of functional SarS-CoV-2 properties, as well as will allow developing the domestic COVID-19 vaccine in Ukraine, thus playing an important strategic role in tackling the pandemics. The aim of the study was to generate prokaryotic and eukaryotic producers of recombinant SarS-CoV-2 proteins and to isolate nucleocapsid (N) protein, receptor-binding do-main (RBD) of spike (S) protein, as well as RBD fused to the carrier – diphtheria toxoid CRM197. For this purpose, appropriate genetic constructs, in particular, replication deficient recombinant AdvC5-based adenoviral vectors expressing the SarS-CoV-2 proteins and CRM197-fused conjugate were created through methods of molecular biology and genetic engineering. Restriction analysis and/or dna sequencing confirmed that we created the correct constructs. Immobilized metal affinity chromatography was used to purify the recombinant proteins. Compliance of their properties was confirmed by the results from polyacrylamide gel electrophoresis, Western blotting, immunoenzymatic assay and MALDI-TOF mass spectrometry. As a result, we generated E. coli Rosetta (de3) bacterial strain and HEK293 cell line producing recombinant SARS-CoV-2 proteins and CRM197-based fusion. In addition, pure N protein, RBD of S protein and RBD-crm197 fusion protein were isolated. The obtained recombinant SarS-CoV-2 proteins can be used to study immunogenic and antigenic properties of the SarS-CoV-2 proteins. Cells producing recombinant SarS-CoV-2 proteins and RBD-crm197 fusion protein are able to provide cheap and safe synthesis of the antigenic substances for domestic development and production of immunodiagnostics for COVID-19 and COVID-19 vaccines in Ukraine. © 2021 Krynina O. I. et al.

SELECTION OF CITATIONS
SEARCH DETAIL