RAR-related orphan receptor gamma
RAR-related orphan receptor gamma (RORγ), also known as NR1F3 (nuclear receptor subfamily 1, group F, member 3), is a nuclear receptor that is encoded by the RORC gene in humans. RORγ is a member of the nuclear receptor family of transcription factors, a class of proteins that play critical roles in regulating the expression of genes involved in a wide range of biological processes including metabolism, development, and immune function.
Function
RORγ is particularly notable for its role in the development and function of several types of immune cells, including T lymphocytes. It is crucial for the development of Th17 cells, a subset of T helper cells that produce the cytokine IL-17 and are important for the body's defense against certain bacteria and fungi. Th17 cells are also implicated in the pathogenesis of several autoimmune diseases, making RORγ a target of interest for therapeutic intervention.
In addition to its role in the immune system, RORγ also influences circadian rhythms and has been implicated in the regulation of metabolism and the development of adipose tissue.
Gene and Expression
The RORC gene, which encodes RORγ, is located on chromosome 1 in humans. There are two major isoforms of the receptor, RORγ and RORγt, the latter being a truncated form that is predominantly expressed in thymus, T lymphocytes, and innate lymphoid cells. The expression of RORγ is tightly regulated, and its activity can be modulated by various ligands, including certain steroids and cholesterol derivatives.
Clinical Significance
Given its pivotal role in the immune system, RORγ has been studied as a potential target for treating autoimmune diseases such as psoriasis, rheumatoid arthritis, and multiple sclerosis. Inhibitors of RORγ activity have the potential to modulate the immune response and reduce inflammation in these conditions. However, targeting RORγ must be approached with caution, as it plays a role in the normal functioning of the immune system and its inhibition could potentially lead to increased susceptibility to infections.
Research Directions
Research on RORγ continues to explore its broader role in physiology and disease. Studies are investigating its involvement in cancer, obesity, and metabolic syndrome, with the aim of understanding how modulation of RORγ activity might contribute to disease prevention or therapy.
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Contributors: Prab R. Tumpati, MD