Geometrical reorganization of Dectin-1 and TLR2 on single phagosomes alters their synergistic immune signaling

  • Wenqian Li
  • , Jun Yan
  • , Yan Yu

Research output: Contribution to journalArticlepeer-review

28 Scopus citations

Abstract

Receptors of innate immune cells function synergistically to detect pathogens and elicit appropriate immune responses. Many receptor pairs also appear “colocalized” on the membranes of phagosomes, the intracellular compartments for pathogen ingestion. However, the nature of the seemingly receptor colocalization and the role it plays in immune regulation are unclear, due to the inaccessibility of intracellular phagocytic receptors. Here, we report a geometric manipulation technique to directly probe the role of phagocytic receptor “colocalization” in innate immune regulation. Using particles with spatially patterned ligands as phagocytic targets, we can decouple the receptor pair, Dectin-1 and Toll-like receptor (TLR)2, to opposite sides on a single phagosome or bring them into nanoscale proximity without changing the overall membrane composition. We show that Dectin-1 enhances immune responses triggered predominantly by TLR2 when their centroid-to-centroid proximity is <500 nm, but this signaling synergy diminishes upon receptor segregation beyond this threshold distance. Our results demonstrate that nanoscale proximity, not necessarily colocalization, between Dectin-1 and TLR2 is required for their synergistic regulation of macrophage immune responses. This study elucidates the relationship between the spatial organization of phagocytic receptors and innate immune responses. It showcases a technique that allows spatial manipulation of receptors and their signal cross-talk on phagosomes inside living cells.

Original languageEnglish
Pages (from-to)25106-25114
Number of pages9
JournalProceedings of the National Academy of Sciences of the United States of America
Volume116
Issue number50
DOIs
StatePublished - Dec 10 2019

Keywords

  • Membrane organization
  • Nanocluster proximity
  • Phagocytosis
  • Phagosome membrane
  • Receptor synergy

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