Chen Jiahuan, Ganguly Anutosh, Mucsi Ashley D, Meng Junchen, Yan Jiacong, Detampel Pascal, Munro Fay, Zhang Zongde, Wu Mei, Hari Aswin, Stenner Melanie D, Zheng Wencheng, Kubes Paul, Xia Tie, Amrein Matthias W, Qi Hai, Shi Yan
Tsinghua-Peking Center for Life Sciences, Tsinghua University, Beijing 10084, China.
Institute for Immunology, School of Medicine, Tsinghua University, Beijing 10084, China.
J Exp Med. 2017 Feb;214(2):327-338. doi: 10.1084/jem.20160620. Epub 2017 Jan 12.
Dendritic cells are targeted by regulatory T (T reg) cells, in a manner that operates as an indirect mode of T cell suppression. In this study, using a combination of single-cell force spectroscopy and structured illumination microscopy, we analyze individual T reg cell-DC interaction events and show that T reg cells exhibit strong intrinsic adhesiveness to DCs. This increased DC adhesion reduces the ability of contacted DCs to engage other antigen-specific cells. We show that this unusually strong LFA-1-dependent adhesiveness of T reg cells is caused in part by their low calpain activities, which normally release integrin-cytoskeleton linkage, and thereby reduce adhesion. Super resolution imaging reveals that such T reg cell adhesion causes sequestration of Fascin-1, an actin-bundling protein essential for immunological synapse formation, and skews Fascin-1-dependent actin polarization in DCs toward the T reg cell adhesion zone. Although it is reversible upon T reg cell disengagement, this sequestration of essential cytoskeletal components causes a lethargic state of DCs, leading to reduced T cell priming. Our results reveal a dynamic cytoskeletal component underlying T reg cell-mediated DC suppression in a contact-dependent manner.
调节性T(Treg)细胞以一种作为T细胞抑制间接模式的方式靶向树突状细胞(DC)。在本研究中,我们结合单细胞力谱和结构照明显微镜,分析了单个Treg细胞与DC的相互作用事件,并表明Treg细胞对DC表现出很强的内在粘附性。这种增加的DC粘附降低了被接触的DC与其他抗原特异性细胞结合的能力。我们表明,Treg细胞这种异常强烈的依赖淋巴细胞功能相关抗原-1(LFA-1)的粘附性部分是由其低钙蛋白酶活性引起的,钙蛋白酶通常会释放整合素-细胞骨架连接,从而降低粘附。超分辨率成像显示,这种Treg细胞粘附导致成束蛋白-1(Fascin-1)被隔离,Fascin-1是免疫突触形成所必需的肌动蛋白成束蛋白,并使DC中依赖Fascin-1的肌动蛋白极化偏向Treg细胞粘附区。尽管在Treg细胞脱离接触后是可逆的,但这种必需细胞骨架成分的隔离会导致DC处于无活力状态,从而导致T细胞活化降低。我们的结果揭示了一种动态细胞骨架成分,其以接触依赖的方式构成Treg细胞介导的DC抑制的基础。