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Prediction and Evolution of B Cell Epitopes of Surface Protein in SARS-CoV-2
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Abstract
Background In order to obtain antibodies that recognize natural proteins, it is possible to predict the antigenic determinants of natural proteins, which are eventually embodied as polypeptides. The polypeptides can be coupled with corresponding vectors to stimulate the immune system to produce corresponding antibodies, which is also a simple and effective vaccine development method. The discovery of epitopes is helpful to the development of SARS-CoV-2 vaccine. Methods The analyses were related to epitopes on 3 proteins, including spike(S), envelope(E) and membrane(M) proteins, which were associated with the lipid envelope of the SARS-CoV-2. Based on the NCBI Reference Sequence: NC_045512.2, the conformational and linear B cell epitopes of the surface protein were predicted separately by various prediction methods. Furthermore, the conservation of the epitopes, the adaptability and other evolutionary characteristics were also analyzed, the sequences of the whole genome of SARS-CoV-2 were obtained from the GISAID. Results 7 epitopes were predicted, including 6 linear epitopes and 1 conformational epitope. One of the linear and one of the conformational consist of identical sequence, but represent different forms of epitopes. It is worth mentioning that all of the 6 dominated epitopes were conservative in nearly 3500 SARS-CoV-2 genomes, and they showed a phenomenon which is helpful to obtain stable and long-acting epitopes under the condition of high frequency of amino acid mutation, and deserved further study at the experiment level. Conclusion The findings would facilitate the vaccine development, had the potential to be directly applied on the prevention in this disease, but also have the potential to prevent the possible threats caused by other types of coronavirus.
Springer Science and Business Media LLC
Title: Prediction and Evolution of B Cell Epitopes of Surface Protein in SARS-CoV-2
Description:
Abstract
Background In order to obtain antibodies that recognize natural proteins, it is possible to predict the antigenic determinants of natural proteins, which are eventually embodied as polypeptides.
The polypeptides can be coupled with corresponding vectors to stimulate the immune system to produce corresponding antibodies, which is also a simple and effective vaccine development method.
The discovery of epitopes is helpful to the development of SARS-CoV-2 vaccine.
Methods The analyses were related to epitopes on 3 proteins, including spike(S), envelope(E) and membrane(M) proteins, which were associated with the lipid envelope of the SARS-CoV-2.
Based on the NCBI Reference Sequence: NC_045512.
2, the conformational and linear B cell epitopes of the surface protein were predicted separately by various prediction methods.
Furthermore, the conservation of the epitopes, the adaptability and other evolutionary characteristics were also analyzed, the sequences of the whole genome of SARS-CoV-2 were obtained from the GISAID.
Results 7 epitopes were predicted, including 6 linear epitopes and 1 conformational epitope.
One of the linear and one of the conformational consist of identical sequence, but represent different forms of epitopes.
It is worth mentioning that all of the 6 dominated epitopes were conservative in nearly 3500 SARS-CoV-2 genomes, and they showed a phenomenon which is helpful to obtain stable and long-acting epitopes under the condition of high frequency of amino acid mutation, and deserved further study at the experiment level.
Conclusion The findings would facilitate the vaccine development, had the potential to be directly applied on the prevention in this disease, but also have the potential to prevent the possible threats caused by other types of coronavirus.
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