Tolerance to apoptotic cells is regulated by indoleamine 2, 3-dioxygenase

B Ravishankar, H Liu, R Shinde… - Proceedings of the …, 2012 - National Acad Sciences
B Ravishankar, H Liu, R Shinde, P Chandler, B Baban, M Tanaka, DH Munn, AL Mellor
Proceedings of the National Academy of Sciences, 2012National Acad Sciences
Tolerance to self-antigens present in apoptotic cells is critical to maintain immune-
homeostasis and prevent systemic autoimmunity. However, mechanisms that sustain self-
tolerance are poorly understood. Here we show that systemic administration of apoptotic
cells to mice induced splenic expression of the tryptophan catabolizing enzyme indoleamine
2, 3-dioxygenase (IDO). IDO expression was confined to the splenic marginal zone and was
abrogated by depletion of CD169+ cells. Pharmacologic inhibition of IDO skewed the …
Tolerance to self-antigens present in apoptotic cells is critical to maintain immune-homeostasis and prevent systemic autoimmunity. However, mechanisms that sustain self-tolerance are poorly understood. Here we show that systemic administration of apoptotic cells to mice induced splenic expression of the tryptophan catabolizing enzyme indoleamine 2,3-dioxygenase (IDO). IDO expression was confined to the splenic marginal zone and was abrogated by depletion of CD169+ cells. Pharmacologic inhibition of IDO skewed the immune response to apoptotic cells, resulting in increased proinflammatory cytokine production and increased effector T-cell responses toward apoptotic cell-associated antigens. Presymptomatic lupus-prone MRLlpr/lpr mice exhibited abnormal elevated IDO expression in the marginal zone and red pulp and inhibition of IDO markedly accelerated disease progression. Moreover, chronic exposure of IDO-deficient mice to apoptotic cells induced a lupus-like disease with serum autoreactivity to double-stranded DNA associated with renal pathology and increased mortality. Thus, IDO limits innate and adaptive immunity to apoptotic self-antigens and IDO-mediated regulation inhibits inflammatory pathology caused by systemic autoimmune disease.
National Acad Sciences