Parker Institute for Cancer Immunotherapy, San Francisco, CA, 94129, USA.
Systems Immunology and Single-Cell Biology, German Cancer Research Center (DKFZ), Heidelberg, Germany.
Nat Commun. 2022 Sep 2;13(1):5184. doi: 10.1038/s41467-022-32849-1.
Cellular metabolism underpins immune cell functionality, yet our understanding of metabolic influences in human dendritic cell biology and their ability to orchestrate immune responses is poorly developed. Here, we map single-cell metabolic states and immune profiles of inflammatory and tolerogenic monocytic dendritic cells using recently developed multiparametric approaches. Single-cell metabolic pathway activation scores reveal simultaneous engagement of multiple metabolic pathways in distinct monocytic dendritic cell differentiation stages. GM-CSF/IL4-induce rapid reprogramming of glycolytic monocytes and transient co-activation of mitochondrial pathways followed by TLR4-dependent maturation of dendritic cells. Skewing of the mTOR:AMPK phosphorylation balance and upregulation of OXPHOS, glycolytic and fatty acid oxidation metabolism underpin metabolic hyperactivity and an immunosuppressive phenotype of tolerogenic dendritic cells, which exhibit maturation-resistance and a de-differentiated immune phenotype marked by unique immunoregulatory receptor signatures. This single-cell dataset provides important insights into metabolic pathways impacting the immune profiles of human dendritic cells.
细胞代谢是免疫细胞功能的基础,但我们对人类树突状细胞生物学中的代谢影响及其调节免疫反应的能力的理解还很不完善。在这里,我们使用最近开发的多参数方法来绘制炎性和耐受性单核细胞树突状细胞的单细胞代谢状态和免疫特征。单细胞代谢途径激活评分显示,在不同的单核细胞树突状细胞分化阶段,多个代谢途径同时被激活。GM-CSF/IL4 诱导快速重编程糖酵解单核细胞,并短暂共激活线粒体途径,随后 TLR4 依赖性树突状细胞成熟。mTOR:AMPK 磷酸化平衡的倾斜以及 OXPHOS、糖酵解和脂肪酸氧化代谢的上调,为耐受性树突状细胞的代谢过度活跃和免疫抑制表型提供了基础,其表现出成熟抵抗和去分化的免疫表型,其特征是独特的免疫调节受体特征。这个单细胞数据集为了解影响人类树突状细胞免疫特征的代谢途径提供了重要的见解。