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对病毒大小颗粒上展示的抗原产生有效B细胞应答的分子基础。

Molecular basis for potent B cell responses to antigen displayed on particles of viral size.

作者信息

Brooks Jeremy F, Riggs Julianne, Mueller James L, Mathenge Raisa, Wholey Wei-Yun, Yoda Sekou-Tidiane, Vykunta Vivasvan S, Cheng Wei, Zikherman Julie

出版信息

bioRxiv. 2023 Mar 1:2023.02.15.528761. doi: 10.1101/2023.02.15.528761.

Abstract

Although it has long been appreciated that multivalent antigens - and particularly viral epitope display - produce extremely rapid, robust, and T-independent humoral immune responses, the biochemical basis for such potency has been incompletely understood. Here we take advantage of a set of neutral liposomes of viral size that are engineered to display affinity mutants of the model antigen (Ag) hen egg lysozyme at precisely varied density. We show that particulate Ag display by liposomes induces highly potent B cell responses that are dose-and density-dependent but affinity-independent. Titrating dose of particulate, but not soluble, Ag reveals bimodal Erk phosphorylation and cytosolic calcium increases. Particulate Ag induces signal amplification downstream of the B cell receptor (BCR) by selectively evading LYN-dependent inhibitory pathways, but potency is independent of CD19. Importantly, Ag display on viral-sized particles signals independently of MYD88 and IRAK1/4, but activates NF- B robustly in a manner that mimics T cell help. Together, such biased signaling by particulate Ag promotes MYC expression and reduces the threshold required for B cell proliferation relative to soluble Ag. These findings uncover a molecular basis for highly sensitive B cell response to viral Ag display and remarkable potency of virus-like particle vaccines that is not merely accounted for by avidity and BCR cross-linking, and is independent of the contribution of B cell nucleic acid-sensing machinery.

摘要

尽管人们早就认识到多价抗原——尤其是病毒表位展示——能产生极其快速、强烈且不依赖T细胞的体液免疫反应,但这种强效作用的生化基础尚未完全明确。在此,我们利用一组病毒大小的中性脂质体,将其设计成能以精确变化的密度展示模型抗原(Ag)——鸡卵溶菌酶的亲和突变体。我们发现脂质体展示的颗粒状Ag能诱导高效的B细胞反应,该反应呈剂量和密度依赖性,但与亲和力无关。滴定颗粒状而非可溶性Ag的剂量,可揭示双峰Erk磷酸化和胞质钙增加。颗粒状Ag通过选择性逃避LYN依赖性抑制途径,在B细胞受体(BCR)下游诱导信号放大,但其效力与CD19无关。重要的是,病毒大小颗粒上的Ag展示信号独立于MYD88和IRAK1/4,但以模仿T细胞辅助的方式强烈激活NF-κB。总之,颗粒状Ag的这种偏向性信号传导促进了MYC表达,并相对于可溶性Ag降低了B细胞增殖所需的阈值。这些发现揭示了B细胞对病毒Ag展示高度敏感反应以及病毒样颗粒疫苗显著效力的分子基础,这不仅仅是由亲和力和BCR交联所导致,且独立于B细胞核酸传感机制的贡献。

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