Completed Infection & Immunity Cancer

Defining the Fc receptor-mediated trafficking of IgG-antigen complexes in macrophages

In plain English

AI plain-English summary

Macrophages—the most abundant immune cells in inflamed tissue and tumours—swallow antibody-coated antigens, but exactly how they process and present those antigens to T cells remains a cellular black box. The problem is that macrophages carry several different Fc receptors, each of which grabs antibody–antigen complexes in a slightly different way. That initial handshake determines where the antigen goes inside the cell, how it gets chopped up, and which fragments end up displayed on MHC molecules for T cells to see. No one has mapped this trafficking network in three dimensions over time, so the rules that govern which antigens get presented—and which do not—are essentially unknown. The researchers have built advanced microscopy tools that can track these dynamic, three-dimensional processes at unprecedented resolution. They will combine those tools with antibody engineering and mouse models of cancer and autoimmunity to untangle how the delivery vehicle, the tissue environment, and the macrophage’s own state combine to shape the final antigen display. This is fundamental cell biology. If it succeeds, it will reveal the mechanistic logic behind antigen presentation—knowledge that could eventually guide the design of vaccines or immunotherapies that deliberately steer macrophages toward a predictable immune response.

View original technical description
Macrophages represent the most abundant antigen presenting cells in inflammatory infiltrates and tumors. An important immunoregulatory function of macrophages is to present antigen to cognate T cells. Antibody (IgG)-antigen complexes are internalized into macrophages through potential interactions with multiple different Fc receptors and are subsequently delivered to subcellular compartments where peptides derived from the proteolyzed antigen can be loaded onto MHC molecules. However, the multitude of possible Fc receptor interactions with the antibody-antigen complexes influences the spatial and temporal behavior of antigen and consequent peptide-MHC repertoire through a complex, and poorly understood, network of subcellular trafficking pathways. We have developed advanced microscopy tools to enable the analysis of three-dimensional, dynamic cellular processes at unprecedented levels of spatiotemporal resolution. We will combine these approaches with antibody engineering and analyses in mouse models of cancer and autoimmunity to elucidate how the combination of antigen delivery vehicle, microenvironmental factors and macrophage phenotype interplay to result in specific antigen presentation outcomes. The two long term goals of these studies are: one, to develop novel mechanistic insights into the fundamental cell biological processes determining the repertoire of presented antigens; two, to define how to deliver antigen to macrophages to orchestrate a predictable immune response.

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Researchers

Elizabeth Ward (EPMC Awardee)

Related Research

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Original classification

Investigator Award in Science

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