bioRxiv · 10.1101/2022.08.08.503075
Human immune and gut microbial parameters associated with inter-individual variations in COVID-19 mRNA vaccine-induced immunity
Abstract
COVID-19 mRNA vaccines induce protective adaptive immunity against SARS-CoV-2 in most individuals, but there is wide variation in levels of vaccine-induced antibody and T-cell responses. However, factors associated with this inter-individual variation remain unclear. Here, using a systems biology approach based on multi-omics analyses of human blood and stool samples, we find that baseline expression of AP-1 transcription factors, FOS and ATF3, is inversely correlated with BNT162b2 mRNA vaccine-induced T-cell responses. FOS expression is associated with transcription modules related to baseline immunity, but it is negatively associated with those related to T-cell activation upon BNT162b2 mRNA stimulation. Interestingly, the gut microbial fucose/rhamnose degradation pathway is positively correlated with FOS and ATF3 expression and inversely correlated with BNT162b2-induced T-cell responses. Taken together, these results demonstrate that baseline expression of AP-1 genes, which is associated with the gut microbial fucose/rhamnose degradation pathway, is a key negative correlate of BNT162b2-induced T-cell responses.
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Hirota, M., Tamai, M., Yukawa, S., Taira, N., Matthews, M. M., Toma, T., Seto, Y., Yoshida, M., Toguchi, S., Miyagi, M., Mori, T., Tomori, H., Tamai, O., Kina, M., Sakihara, E., Yamashiro, C., Tamaki, K., Wolf, M., Collins, M. K., Kitano, H., Ishikawa, H.. 2022-08-08. Human immune and gut microbial parameters associated with inter-individual variations in COVID-19 mRNA vaccine-induced immunity. https://doi.org/10.1101/2022.08.08.503075
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