Metabolic control of TFH cells and humoral immunity by phosphatidylethanolamine

细胞生物学 CXCR5型 BCL6公司 免疫系统 刺猬信号通路 生物 细胞分化 细胞 免疫学 化学 B细胞 生发中心 生物化学 信号转导 抗体 基因
作者
Guotong Fu,Clifford S. Guy,Nicole M. Chapman,Gustavo Palacios,Jun Wei,Peipei Zhou,Lingyun Long,Yong‐Dong Wang,Chenxi Qian,Yogesh Dhungana,Hongling Huang,Anil KC,Hao Shi,Sherri L. Rankin,Scott A. Brown,Amanda Johnson,Randall Wakefield,Camenzind G. Robinson,Xueyan Liu,Anthony Sheyn
出处
期刊:Nature [Nature Portfolio]
卷期号:595 (7869): 724-729 被引量:110
标识
DOI:10.1038/s41586-021-03692-z
摘要

T follicular helper (TFH) cells are crucial for B cell-mediated humoral immunity1. Although transcription factors such as BCL6 drive the differentiation of TFH cells2,3, it is unclear whether and how post-transcriptional and metabolic programs enforce TFH cell programming. Here we show that the cytidine diphosphate (CDP)–ethanolamine pathway co-ordinates the expression and localization of CXCR5 with the responses of TFH cells and humoral immunity. Using in vivo CRISPR–Cas9 screening and functional validation in mice, we identify ETNK1, PCYT2, and SELENOI—enzymes in the CDP–ethanolamine pathway for de novo synthesis of phosphatidylethanolamine (PE)—as selective post-transcriptional regulators of TFH cell differentiation that act by promoting the surface expression and functional effects of CXCR5. TFH cells exhibit unique lipid metabolic programs and PE is distributed to the outer layer of the plasma membrane, where it colocalizes with CXCR5. De novo synthesis of PE through the CDP–ethanolamine pathway co-ordinates these events to prevent the internalization and degradation of CXCR5. Genetic deletion of Pcyt2, but not of Pcyt1a (which mediates the CDP–choline pathway), in activated T cells impairs the differentiation of TFH cells, and this is associated with reduced humoral immune responses. Surface levels of PE and CXCR5 expression on B cells also depend on Pcyt2. Our results reveal that phospholipid metabolism orchestrates post-transcriptional mechanisms for TFH cell differentiation and humoral immunity, highlighting the metabolic control of context-dependent immune signalling and effector programs. Enzymes in the cytidine diphosphate–ethanolamine metabolic pathway, which promotes de novo synthesis of phosphatidylethanolamine, are shown to act as post-transcriptional mediators of the differentiation of T follicular helper (TFH) cells, by regulating the chemokine receptor CXCR5.
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