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T and B Cell Receptor Immune Repertoire Analysis using Next-generation Sequencing
Published on: January 12, 2021
Naive and Memory B Cell BCR Repertoires in Individuals Immunized with an Inactivated SARS-CoV-2 Vaccine
Renato Kaylan Alves de Oliveira França1,2, Pedro Henrique Aragão Barros1,3, Jacyelle Medeiros Silva1
1Department of Cellular Biology, Institute of Biological Science, University of Brasília, Brasilia 70910-900, DF, Brazil.
Background:
The COVID-19 pandemic has spurred a global race for a preventive vaccine, with a few becoming available just one year after describing this novel coronavirus disease. Among these are inactivated virus vaccines like CoronaVac (Sinovac Biotech), which are used in several countries to reduce the pandemic's effects. However, its use was associated with low protection, particularly against novel virus variants that quickly appeared in the following months. Vaccines play a crucial role in activating the immune system to combat infections, with Memory B-cells being a key part of this mechanism, eliciting protective neutralizing antibodies. This work focused on studying B-cell memory repertoire after two consecutive doses of CoronaVac.
Methodology:
Memory B-cells were isolated from five CoronaVac vaccinated and five pre-pandemic individuals and subsequently stimulated in vitro before high-throughput Illumina sequencing of the Heavy Chain Variable repertoire.
Results:
We observed a shift in the VH repertoire with increased HCDR3 length and enrichment of IGVH 3-23, 3-30, 3-7, 3-72, and 3-74 for IgA BCRs and IGHV 4-39 and 4-59 for IgG BCRs. A high expansion of IgA-specific clonal populations was observed in vaccinated individuals relative to pre-pandemic controls, accompanied by shared IgA variable heavy chain (VH) sequences among memory B cells across different vaccine recipients of IgA clones was also observed in vaccinated individuals compared to pre-pandemic controls, with several IgA VH sharing between memory B cells from different vaccines. Moreover, a high convergence was observed among vaccinees and SARS-CoV-2 neutralizing antibody sequences found in the CoV-abDab database.
Conclusion:
These data show the ability of CoronaVac to elicit antibodies with characteristics similar to those previously identified as neutralizing antibodies, supporting its protective efficacy. Furthermore, this analysis of the immunological repertoire in the context of viral infections reinforces the importance of immunization in generating convergent antibodies for the antiviral response.
Insights
This study analyzed B-cell memory after CoronaVac vaccination, finding it elicits antibodies similar to neutralizing ones. Immunization is key for generating convergent antibodies against viral infections like COVID-19.
Area of Science:
- Immunology
- Vaccinology
- Molecular Biology
Background:
- The COVID-19 pandemic necessitated rapid vaccine development, including inactivated virus vaccines like CoronaVac.
- CoronaVac showed limitations against emerging SARS-CoV-2 variants.
- Memory B-cells are crucial for adaptive immunity and producing neutralizing antibodies.
Purpose of the Study:
- To investigate the B-cell memory repertoire following two doses of the CoronaVac vaccine.
- To understand the characteristics of antibodies generated by CoronaVac.
Main Methods:
- Isolation of memory B-cells from vaccinated and pre-pandemic individuals.
- In vitro stimulation of B-cells.
- High-throughput sequencing of the Heavy Chain Variable (VH) repertoire.
Main Results:
- A shift in the VH repertoire was observed, with increased HCDR3 length and specific VH gene enrichment for IgA and IgG B-cell receptors (BCRs).
- Significant expansion of IgA-specific clonal populations and shared IgA VH sequences were found in vaccinated individuals.
- Vaccinee antibody sequences showed convergence with known SARS-CoV-2 neutralizing antibodies.
Conclusions:
- CoronaVac elicits antibodies with characteristics of neutralizing antibodies, supporting its protective role.
- Immunization is vital for generating convergent antibodies, enhancing the antiviral immune response.
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