UTERUS · Unravelling gamma delta T cell emergence and responses in the uterus
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2018-03-01 → 2020-02-29
- EU contribution
- €183,455
- Participants
- 1
- Scheme
- MSCA-IF-EF-ST
Lines connect the coordinator with its partners.
Results in brief
Unravelling gamma delta T cell emergence and responses in the uterus
T cells are a central component of the immune system. Two main subsets -alpha beta and gamma delta (gd)- can be described, according to the composition of the cell membrane receptors they use to detect antigen. gd T cells usually constitute a small proportion of blood lymphocytes (1-5%), but are enriched at barrier sites, such as the skin and the intestine, where they reside in close contact with epithelial cells. Their location at key sites of infection and cellular transformation, together with their ability to detect tissue perturbations, are ideal properties for a natural immunosurveillance compartment. This has been highlighted recently by their identification as the single most significant human immune population correlating with a favourable cancer prognosis. Nonetheless, despite much effort on elucidating the mechanisms of T cell activation and the cells’ involvement in host protection, much of the biology of gd T cells remains obscure. To address this, it is important to consider how these specialised lymphocytes interact with specific host tissues. This project sought to elucidate the biology of uterine gd T cells, one of the least understood populations of gd T cells. For example, their spatial and temporal location relative to the uterine epithelium and stroma are ill-defined. Moreover, there is little understanding of T cells more generally in the reproductive tract, a site highly vulnerable to infection and malignant transformation, and a common focus of medical intervention. In this context the overarching goals for this project were: 1- To characterize and define the function of uterine gd T cells. In this aim, we determined the precise tissue localisation, dynamics and functional properties of uterine gd T cells. 2- To identify the endogenous and environmental mechanisms regulating uterine gd T cells. In this aim, we sought to identify and characterise candidate molecules that regulate the development and/or maintenance of uterine gd T cells, asking whether they act via generalisable mechanisms in common with skin and gut gd T cells, or whether they are unique. Additionally, we studied whether the microbiome regulates the development and/or function of uterine gd T cells, as has been claimed to be the case for some other gd T cell compartments. Our data have generated the most comprehensive analysis to date of gd T cells in the murine uterus, highlighting their localisation within the uterine stroma and their population kinetics. We have also shown that the cells express a set of characteristic molecules, among which is the proinflammatory mediator IL-17A, which is associated with protection against fungal infections. Indeed, despite being dispensable for normal pregnancy, gd T cells played a critical role in protection of the female reproductive tract against Candida albicans infection.
Data: CORDIS, © European Union
Project objective
Gamma delta (gd) T cells constitute a small proportion of blood lymphocytes, but are enriched at barrier sites, where they reside in close contact with epithelial cells. Their location at sites of pathogenic insult and cellular transformation, together with their ability to promptly respond to tissue alterations, places them in a central position in immune protection. We have shown that epithelial molecules direct the development of tissue-specific populations of gd T cells. Indeed, we have identified a role for epithelial-expressed butyrophilin-like (Btnl) proteins in driving the development of epidermal and intraepithelial gd T cells. Importantly, the requirement for Btnls is conserved in intestinal gd T cells in humans. In this project, we will focus on uterine gd T cells, which are arguably one of the least understood populations of gd T cells. These cells bear a specific, invariant T cell receptor, and are thought to become precommitted to an IL-17A-secreting programme during early ontogeny. In other tissues, these cells, termed gd17, can rapidly produce the pro-inflammatory cytokine IL-17A following infection, thereby contributing to limiting infection with bacterial and fungal pathogens. In addition, gd17 cells have been shown to play a role in tissue repair, including promotion of fracture repair. However, the inflammatory effects of IL-17A can also lead to exacerbation of tissue damage and to a pro-tumorigenic effect. In this project, we will determine the functional characteristics of uterine gd T cells, and identify novel factors guiding the development and homing of these cells. Understanding the cues driving gd T cell development and activation at specific body niches is not only essential from a basic research standpoint, but may reveal novel drug targets for various clinical conditions, particularly in the face of emerging infections targeting the female reproductive tract and hindering embryonic development.
Original text from CORDIS.
Participants
- THE FRANCIS CRICK INSTITUTE LIMITED · LondonCoordinatorUnited Kingdom
Links
Data: CORDIS, © European Union
