Universal recording of cell-cell contacts in vivo for interaction-based transcriptomics

Sandra Nakandakari-Higa1, Maria C C Canesso1,2, Sarah Walker3,4

  • 1Laboratory of Lymphocyte Dynamics, The Rockefeller University, New York, NY, USA.

Insights

A new universal method, uLIPSTIC, tracks transient cell-cell interactions in vivo. This technology reveals diverse immune cell partnerships and their roles in tissue function, advancing our understanding of cellular communication.

Area of Science:

  • Immunology
  • Cell Biology
  • Biotechnology

Background:

  • Cellular interactions are critical for tissue organization and immune cell regulation.
  • Previous methods like LIPSTIC were limited to specific receptor-ligand pairs (CD40L-CD40).
  • A broader approach is needed to study diverse transient cell-cell contacts in vivo.

Purpose of the Study:

  • To develop a universal method (uLIPSTIC) for tracking diverse cell-cell interactions in vivo.
  • To overcome the limitations of previous receptor-specific interaction labeling techniques.
  • To broadly apply the technology to various immunological contexts.

Main Methods:

  • Development of a universal LIPSTIC (uLIPSTIC) technique enabling label transfer between interacting cells regardless of specific receptors.
  • Application of uLIPSTIC to study T cell priming, regulatory T cell interactions, and T follicular helper cell interactions.
  • Integration of uLIPSTIC with single-cell transcriptomics to catalog immune-intestinal epithelial cell interactions.

Main Results:

  • uLIPSTIC successfully records interactions among immune cells and between immune and non-immune cells.
  • Demonstrated utility in monitoring CD8+ T cell priming by dendritic cells.
  • Identified germinal center T follicular helper cells interacting with B cells.
  • Cataloged immune cell interactions with intestinal epithelial cells, revealing stepwise adaptation of CD4+ T cells.

Conclusions:

  • uLIPSTIC broadly captures diverse immune cell interactions in vivo.
  • Demonstrates stepwise interaction acquisition by T cells in intestinal tissue.
  • Provides a powerful technology for studying cell-cell communication in various biological systems.