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Published on: October 12, 2012
Prolidase Deficiency Causes Spontaneous T Cell Activation and Lupus-like Autoimmunity
Rose Hodgson1, Tanya L Crockford1, Aneesha Bhandari1
1MRC Human Immunology Unit, Nuffield Department of Medicine, University of Oxford, Oxford, United Kingdom.
Insights
Prolidase deficiency causes autoimmune disease by impairing T cell function. Pepd-null mice develop lupus-like symptoms, indicating prolidase is crucial for maintaining self-tolerance.
Area of Science:
- Immunology
- Genetics
- Metabolic Disorders
Background:
- Prolidase deficiency (PD) is a genetic disorder affecting multiple systems.
- PD is linked to autoimmune conditions, potentially mimicking systemic lupus erythematosus (SLE).
- The exact cause of autoimmune associations in PD remains unclear.
Purpose of the Study:
- To investigate the causal link between prolidase deficiency and autoimmune disease.
- To elucidate the mechanisms underlying autoimmune manifestations in PD.
Main Methods:
- Utilized Pepd-null mouse models to study PD.
- Analyzed autoantibody levels, immune complex deposition, and T cell populations.
- Employed mixed chimera experiments to assess cell-intrinsic effects.
Main Results:
- Pepd-null mice exhibited increased antinuclear autoantibodies and IgA, with kidney immune complex deposition, resembling SLE.
- Accumulation of CD4 and CD8 effector T cells was observed in spleen and liver.
- Pepd deficiency induced spontaneous, cell-intrinsic T cell activation and proliferation.
Conclusions:
- Prolidase deficiency contributes to autoimmune susceptibility through spontaneous T cell dysfunction.
- This dysfunction, possibly combined with external immune activators, leads to SLE-like disease.
- Understanding prolidase's role in self-tolerance highlights the need for treatments targeting T cell activation in PD.
Abstract:
Prolidase deficiency (PD) is a multisystem disorder caused by mutations in the PEPD gene, which encodes a ubiquitously expressed metallopeptidase essential for the hydrolysis of dipeptides containing C-terminal proline or hydroxyproline. PD typically presents in childhood with developmental delay, skin ulcers, recurrent infections, and, in some patients, autoimmune features that can mimic systemic lupus erythematosus. The basis for the autoimmune association is uncertain, but might be due to self-antigen exposure with tissue damage, or indirectly driven by chronic infection and microbial burden. In this study, we address the question of causation and show that Pepd-null mice have increased antinuclear autoantibodies and raised serum IgA, accompanied by kidney immune complex deposition, consistent with a systemic lupus erythematosus-like disease. These features are associated with an accumulation of CD4 and CD8 effector T cells in the spleen and liver. Pepd deficiency leads to spontaneous T cell activation and proliferation into the effector subset, which is cell intrinsic and independent of Ag receptor specificity or antigenic stimulation. However, an increase in KLRG1+ effector CD8 cells is not observed in mixed chimeras, in which the autoimmune phenotype is also absent. Our findings link autoimmune susceptibility in PD to spontaneous T cell dysfunction, likely to be acting in combination with immune activators that lie outside the hemopoietic system but result from the abnormal metabolism or loss of nonenzymatic prolidase function. This knowledge provides insight into the role of prolidase in the maintenance of self-tolerance and highlights the importance of treatment to control T cell activation.
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