Ning Yuan, Yanhong Su, Yang Gao, Biao Yang, Tianzhe Zhang, Qianhao Wang, Dan Zhang, Lin Shi, Anjun Jiao, Lei Lei, Lina Sun, Baojun Zhang
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引用次数: 0
摘要
迁移是胸腺 T 细胞进入血液循环和淋巴结的关键步骤,对未来的免疫监视至关重要。虽然基于启动子的转录调控通过 Foxo1、Klf2、Ccr7 和 Sell 对 T 细胞迁移进行调控,但增强子是否以及如何参与这一过程在很大程度上仍未得到探讨。在这里,我们发现有条件地缺失介体复合体的一个成分、增强子和 RNA 聚合酶 II 之间的介体 Med1 会导致 LN 中 CD4+ 和 CD8+ T 细胞的减少,以及脾脏中 CD8+ T 细胞的减少。重要的是,Med1缺失阻碍了胸腺αβT细胞向血液循环和LNs的迁移,并伴随着KLF2、CCR7和CD62L的下调。从机理上讲,Med1 通过促进 Foxo1 与 Klf2 增强子的结合来促进 Klf2 的转录。此外,Klf2的强迫表达可挽救Ccr7和Sell的表达,以及αβT细胞向LN的迁移。总之,我们的研究揭示了 Med1 在调节基于增强子的 Foxo1-Klf2 转录程序和 αβT 细胞向 LNs 迁移中的关键作用,为 T 细胞迁移的分子机制提供了有价值的见解。
Med1 controls thymic T-cell migration into lymph node through enhancer-based Foxo1-Klf2 transcription program
The migration is the key step for thymic T cells to enter circulation and then lymph nodes (LNs), essential for future immune surveillance. Although promoter-based transcriptional regulation through Foxo1, Klf2, Ccr7, and Sell regulates T-cell migration, it remains largely unexplored whether and how enhancers are involved in this process. Here we found that the conditional deletion of Med1, a component of the mediator complex and a mediator between enhancers and RNA polymerase II, caused a reduction of both CD4+ and CD8+ T cells in LNs, as well as a decrease of CD8+ T cells in the spleen. Importantly, Med1 deletion hindered the migration of thymic αβT cells into the circulation and then into LNs, accompanied by the downregulation of KLF2, CCR7, and CD62L. Mechanistically, Med1 promotes Klf2 transcription by facilitating Foxo1 binding to the Klf2 enhancer. Furthermore, forced expression of Klf2 rescued Ccr7 and Sell expression, as well as αβT-cell migration into LNs. Collectively, our study unveils a crucial role for Med1 in regulating the enhancer-based Foxo1-Klf2 transcriptional program and the migration of αβT cells into LNs, providing valuable insights into the molecular mechanisms underlying T-cell migration.
期刊介绍:
The European Journal of Immunology (EJI) is an official journal of EFIS. Established in 1971, EJI continues to serve the needs of the global immunology community covering basic, translational and clinical research, ranging from adaptive and innate immunity through to vaccines and immunotherapy, cancer, autoimmunity, allergy and more. Mechanistic insights and thought-provoking immunological findings are of interest, as are studies using the latest omics technologies. We offer fast track review for competitive situations, including recently scooped papers, format free submission, transparent and fair peer review and more as detailed in our policies.