Department of Molecular Medicine, Donald & Barbara Zucker School of Medicine at Hofstra/Northwell, Hempstead, NY, United States.
The Institute of Molecular Medicine at The Feinstein Institutes for Medical Research, Manhasset, NY, United States.
Front Immunol. 2022 Mar 23;13:814627. doi: 10.3389/fimmu.2022.814627. eCollection 2022.
Plasmacytoid dendritic cells [pDCs] represent a rare innate immune subset uniquely endowed with the capacity to produce substantial amounts of type-I interferons. This function of pDCs is critical for effective antiviral defenses and has been implicated in autoimmunity. While IFN-I and select cytokines have been recognized as pDC secreted products, a comprehensive agnostic profiling of the pDC secretome in response to a physiologic stimulus has not been reported. We applied LC-MS/MS to catalogue the repertoire of proteins secreted by pDCs in the unperturbed condition and in response to challenge with influenza H1N1. We report the identification of a baseline pDC secretome, and the repertoire of virus-induced proteins including most type-I interferons, various cytokines, chemokines and granzyme B. Additionally, using single-cell RNA-seq [scRNA-seq], we perform multidimensional analyses of pDC transcriptional diversity immediately and following stimulation. Our data evidence preexisting pDC heterogeneity, with subsequent highly specialized roles within the pDC population upon stimulation ranging from dedicated cytokine super-producers to cells with APC-like traits. Dynamic expression of transcription factors and surface markers characterize subclusters within activated pDCs. Integrating the proteomic and transcriptomic datasets confirms the pDC-subcluster origin of the proteins identified in the secretome. Our findings represent the most comprehensive molecular characterization of primary human pDCs at baseline, and in response to influenza virus, reported to date.
浆细胞样树突状细胞(pDCs)代表了一种罕见的先天免疫亚群,具有独特的产生大量 I 型干扰素的能力。pDCs 的这一功能对于有效的抗病毒防御至关重要,并与自身免疫有关。虽然 IFN-I 和选择性细胞因子已被认为是 pDC 分泌的产物,但对生理刺激下 pDC 分泌组的全面无偏见分析尚未报道。我们应用 LC-MS/MS 对未受干扰的条件下和流感 H1N1 挑战下 pDC 分泌的蛋白质谱进行编目。我们报告了 pDC 分泌组的基线鉴定,以及病毒诱导的蛋白质谱,包括大多数 I 型干扰素、各种细胞因子、趋化因子和颗粒酶 B。此外,我们使用单细胞 RNA 测序(scRNA-seq)对 pDC 转录多样性进行多维分析,立即和刺激后进行分析。我们的数据证明了 pDC 存在预先存在的异质性,随后在刺激后,pDC 群体内具有专门的细胞因子超产生者到具有 APC 样特征的细胞等高度专业化的作用。转录因子和表面标志物的动态表达特征描述了激活的 pDC 内的亚群。整合蛋白质组学和转录组学数据集证实了分泌组中鉴定的蛋白质的 pDC 亚群起源。我们的研究结果代表了迄今为止对基线和流感病毒反应的原发性人 pDC 进行的最全面的分子特征描述。