Sanmarco Liliana M, Rone Joseph M, Polonio Carolina M, Giovannoni Federico, Lahore Gonzalo Fernandez, Ferrara Kylynne, Gutierrez-Vazquez Cristina, Li Ning, Sokolovska Anna, Plasencia Agustin, Akl Camilo Faust, Nanda Payal, Heck Evelin S, Li Zhaorong, Lee Hong-Gyun, Chao Chun-Cheih, Rejano-Gordillo Claudia M, Fonseca-Castro Pedro H, Illouz Tomer, Linnerbauer Mathias, Kenison Jessica E, Barilla Rocky M, Farrenkopf Daniel, Piester Gavin, Dailey Lucas, Kuchroo Vijay K, Hava David, Wheeler Michael A, Clish Clary, Nowarski Roni, Balsa Eduardo, Lora Jose M, Quintana Francisco J
bioRxiv. 2023 Mar 21:2023.03.17.532101. doi: 10.1101/2023.03.17.532101.
Dendritic cells (DCs) control the generation of self-reactive pathogenic T cells. Thus, DCs are considered attractive therapeutic targets for autoimmune diseases. Using single-cell and bulk transcriptional and metabolic analyses in combination with cell-specific gene perturbation studies we identified a negative feedback regulatory pathway that operates in DCs to limit immunopathology. Specifically, we found that lactate, produced by activated DCs and other immune cells, boosts NDUFA4L2 expression through a mechanism mediated by HIF-1α. NDUFA4L2 limits the production of mitochondrial reactive oxygen species that activate XBP1-driven transcriptional modules in DCs involved in the control of pathogenic autoimmune T cells. Moreover, we engineered a probiotic that produces lactate and suppresses T-cell autoimmunity in the central nervous system via the activation of HIF-1α/NDUFA4L2 signaling in DCs. In summary, we identified an immunometabolic pathway that regulates DC function, and developed a synthetic probiotic for its therapeutic activation.
树突状细胞(DCs)控制自身反应性致病T细胞的产生。因此,DCs被认为是自身免疫性疾病有吸引力的治疗靶点。通过单细胞和大量转录及代谢分析,结合细胞特异性基因扰动研究,我们确定了一条在DCs中起作用以限制免疫病理学的负反馈调节途径。具体而言,我们发现活化的DCs和其他免疫细胞产生的乳酸通过由HIF-1α介导的机制促进NDUFA4L2表达。NDUFA4L2限制线粒体活性氧的产生,而线粒体活性氧会激活DCs中由XBP1驱动的转录模块,这些模块参与致病自身免疫性T细胞的控制。此外,我们设计了一种产生乳酸的益生菌,它通过激活DCs中的HIF-1α/NDUFA4L2信号传导来抑制中枢神经系统中的T细胞自身免疫。总之,我们确定了一条调节DC功能的免疫代谢途径,并开发了一种用于其治疗激活的合成益生菌。