Department of Pathobiological Sciences, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.
Morgridge Institute for Research, University of Wisconsin-Madison, Madison, Wisconsin, United States of America.
PLoS Pathog. 2021 Jan 14;17(1):e1009168. doi: 10.1371/journal.ppat.1009168. eCollection 2021 Jan.
There is a critical need for adjuvants that can safely elicit potent and durable T cell-based immunity to intracellular pathogens. Here, we report that parenteral vaccination with a carbomer-based adjuvant, Adjuplex (ADJ), stimulated robust CD8 T-cell responses to subunit antigens and afforded effective immunity against respiratory challenge with a virus and a systemic intracellular bacterial infection. Studies to understand the metabolic and molecular basis for ADJ's effect on antigen cross-presentation by dendritic cells (DCs) revealed several unique and distinctive mechanisms. ADJ-stimulated DCs produced IL-1β and IL-18, suggestive of inflammasome activation, but in vivo activation of CD8 T cells was unaffected in caspase 1-deficient mice. Cross-presentation induced by TLR agonists requires a critical switch to anabolic metabolism, but ADJ enhanced cross presentation without this metabolic switch in DCs. Instead, ADJ induced in DCs, an unique metabolic state, typified by dampened oxidative phosphorylation and basal levels of glycolysis. In the absence of increased glycolytic flux, ADJ modulated multiple steps in the cytosolic pathway of cross-presentation by enabling accumulation of degraded antigen, reducing endosomal acidity and promoting antigen localization to early endosomes. Further, by increasing ROS production and lipid peroxidation, ADJ promoted antigen escape from endosomes to the cytosol for degradation by proteasomes into peptides for MHC I loading by TAP-dependent pathways. Furthermore, we found that induction of lipid bodies (LBs) and alterations in LB composition mediated by ADJ were also critical for DC cross-presentation. Collectively, our model challenges the prevailing metabolic paradigm by suggesting that DCs can perform effective DC cross-presentation, independent of glycolysis to induce robust T cell-dependent protective immunity to intracellular pathogens. These findings have strong implications in the rational development of safe and effective immune adjuvants to potentiate robust T-cell based immunity.
迫切需要能够安全地诱导针对细胞内病原体的有效和持久的 T 细胞免疫的佐剂。在这里,我们报告称,以 Carbomer 为基础的佐剂 Adjuplex(ADJ)进行的肠胃外疫苗接种可刺激针对亚单位抗原的强大 CD8 T 细胞反应,并为呼吸道病毒和全身性细胞内细菌感染提供有效的免疫保护。为了了解 ADJ 对树突状细胞(DC)抗原交叉呈递的代谢和分子基础的研究揭示了几种独特而独特的机制。ADJ 刺激的 DC 产生了 IL-1β 和 IL-18,表明激活了炎症小体,但在 caspase-1 缺陷小鼠中,体内 CD8 T 细胞的激活不受影响。TLR 激动剂诱导的交叉呈递需要向合成代谢的关键转变,但 ADJ 在 DC 中增强了交叉呈递,而没有这种代谢转变。相反,ADJ 诱导 DC 进入独特的代谢状态,其特征是氧化磷酸化减弱和基础糖酵解水平降低。在没有增加糖酵解通量的情况下,ADJ 通过促进降解抗原的积累、降低内体酸度和促进抗原定位到早期内体,调节了交叉呈递的细胞质途径中的多个步骤。此外,通过增加 ROS 产生和脂质过氧化,ADJ 促进抗原从内体逃逸到细胞质中,通过 TAP 依赖途径的蛋白酶体降解成 MHC I 加载肽。此外,我们发现 ADJ 诱导的脂滴(LB)的诱导和 LB 组成的改变对于 DC 交叉呈递也至关重要。总之,我们的模型通过提出 DC 可以进行有效的 DC 交叉呈递,而不依赖于糖酵解来诱导针对细胞内病原体的强大 T 细胞依赖性保护性免疫,挑战了现有的代谢范例。这些发现对于合理开发安全有效的免疫佐剂以增强强大的 T 细胞基础免疫具有重要意义。