The purpose of the MeRGeR project was to unravel the role of the mineralocorticoid receptor (MR) in the immune response. This receptor is important in mediating the effects of cortisol, a key stress hormone in humans. However, prior to this project, the effects of cortisol on the immune system were primarily attributed to the other receptor of cortisol, the glucocorticoid receptor (GR) and very little was known about the immunomodulatory effects of MR. Determining how these receptors modulate the immune system, both independently and together is essential to our understanding of how stress impacts our immunity. Given the ubiquitous nature of stress, and the impact that it has on our society at both an individual and population level understanding the interaction between stress and the immune system is of strategic importance.
To determine the role of MR in the immune system, we designed an interdisciplinary approach that combined advanced microscopy with novel in vivo models. The first objective was to determine the role of MR in modulating the inflammatory response. This objective was completed using the zebrafish animal model were I characterized the role of MR both during immune system development and in response to an inflammatory stimulus. The overall conclusion of this objective was that MR promotes the immune response, which was in contrast to the activation of GR, which was primarily anti-inflammatory.
The aim of the second objective was to determine how MR and GR functionally interact to alter gene expression. Here we also used zebrafish as a model, as they are the only major model organism that can harbour a complete loss of GR and MR. Therefore, we were provided with a unique opportunity to assess the interaction of GR and MR in the whole animal. To do this we introduced mutated forms of GR and MR that could either only interact with themselves (homodimer) or each other (heterodimer). The conclusions of this objective were that GR and MR can indeed interact, and that this interaction has physiological and immunological significance.
Overall, the publications that will be generated from this project will have considerable impact on the current paradigm of cortisol action in the immune system, how we understand stress, and in extending our understanding of the molecular actions of immunomodulating glucocorticoid drugs.