Longitudinal dynamics of the human B cell response to the yellow fever 17D vaccine.

Wec, Anna Z; Haslwanter, Denise; Abdiche, Yasmina N; Shehata, Laila; Pedreño-Lopez, Nuria; Moyer, Crystal L; Bornholdt, Zachary A; Lilov, Asparouh et al. · Proc Natl Acad Sci U S A · 2020

basic_science · Level V

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Abstract

A comprehensive understanding of the development and evolution of human B cell responses induced by pathogen exposure will facilitate the design of next-generation vaccines. Here, we utilized a high-throughput single B cell cloning technology to longitudinally track the human B cell response to the yellow fever virus 17D (YFV-17D) vaccine. The early memory B cell (MBC) response was mediated by both classical immunoglobulin M (IgM) (IgM<sup>+</sup>CD27<sup>+</sup>) and switched immunoglobulin (swIg<sup>+</sup>) MBC populations; however, classical IgM MBCs waned rapidly, whereas swIg<sup>+</sup> and atypical IgM<sup>+</sup> and IgD<sup>+</sup> MBCs were stable over time. Affinity maturation continued for 6 to 9 mo following vaccination, providing evidence for the persistence of germinal center activity long after the period of active viral replication in peripheral blood. Finally, a substantial fraction of the neutralizing antibody response was mediated by public clones that recognize a fusion loop-proximal antigenic site within domain II of the viral envelope glycoprotein. Overall, our findings provide a framework for understanding the dynamics and complexity of human B cell responses elicited by infection and vaccination.

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