Nakandakari-Higa Sandra, Canesso Maria C C, Walker Sarah, Chudnovskiy Aleksey, Jacobsen Johanne T, Bilanovic Jana, Parigi S Martina, Fiedorczuk Karol, Fuchs Elaine, Bilate Angelina M, Pasqual Giulia, Mucida Daniel, Pritykin Yuri, Victora Gabriel D
Laboratory of Lymphocyte Dynamics, The Rockefeller University, New York, NY, USA.
Laboratory of Mucosal Immunology, The Rockefeller University, New York, NY, USA.
bioRxiv. 2023 Apr 18:2023.03.16.533003. doi: 10.1101/2023.03.16.533003.
Cellular interactions are essential for tissue organization and functionality. In particular, immune cells rely on direct and usually transient interactions with other immune and non-immune populations to specify and regulate their function. To study these "kiss-and-run" interactions directly , we previously developed LIPSTIC (Labeling Immune Partnerships by SorTagging Intercellular Contacts), an approach that uses enzymatic transfer of a labeled substrate between the molecular partners CD40L and CD40 to label interacting cells. Reliance on this pathway limited the use of LIPSTIC to measuring interactions between CD4 helper T cells and antigen presenting cells, however. Here, we report the development of a universal version of LIPSTIC (uLIPSTIC), which can record physical interactions both among immune cells and between immune and non-immune populations irrespective of the receptors and ligands involved. We show that uLIPSTIC can be used, among other things, to monitor the priming of CD8 T cells by dendritic cells, reveal the cellular partners of regulatory T cells in steady state, and identify germinal center (GC)-resident T follicular helper (Tfh) cells based on their ability to interact cognately with GC B cells. By coupling uLIPSTIC with single-cell transcriptomics, we build a catalog of the immune populations that physically interact with intestinal epithelial cells (IECs) and find evidence of stepwise acquisition of the ability to interact with IECs as CD4 T cells adapt to residence in the intestinal tissue. Thus, uLIPSTIC provides a broadly useful technology for measuring and understanding cell-cell interactions across multiple biological systems.
细胞间相互作用对于组织的构建和功能至关重要。特别是,免疫细胞依赖于与其他免疫细胞和非免疫细胞群体的直接且通常是短暂的相互作用来确定和调节其功能。为了直接研究这些“即触即离”的相互作用,我们之前开发了LIPSTIC(通过分选标记细胞间接触来标记免疫伙伴关系),这是一种利用标记底物在分子伴侣CD40L和CD40之间进行酶促转移来标记相互作用细胞的方法。然而,对该途径的依赖限制了LIPSTIC仅用于测量CD4辅助性T细胞与抗原呈递细胞之间的相互作用。在此,我们报告了一种通用版本的LIPSTIC(uLIPSTIC)的开发,它可以记录免疫细胞之间以及免疫细胞与非免疫细胞群体之间的物理相互作用,而与所涉及的受体和配体无关。我们表明,uLIPSTIC除其他用途外,可用于监测树突状细胞对CD8 T细胞的激活,揭示稳态下调节性T细胞的细胞伙伴,并基于其与生发中心(GC)B细胞同源相互作用的能力来鉴定驻留在生发中心的T滤泡辅助(Tfh)细胞。通过将uLIPSTIC与单细胞转录组学相结合,我们构建了与肠上皮细胞(IEC)发生物理相互作用的免疫群体目录,并发现随着CD4 T细胞适应在肠道组织中的驻留,它们逐步获得与IEC相互作用能力的证据。因此,uLIPSTIC为测量和理解多个生物系统中的细胞间相互作用提供了一种广泛有用的技术。