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Updated: May 27, 2026

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
Caspase-activated DNase is required for maintenance of tolerance to lupus nuclear autoantigens
Neelakshi R Jog1, Lorenza Frisoni, Qin Shi
1Temple University, Philadelphia, Pennsylvania 19140, USA.
Objective:
Caspase-activated DNase (CAD) is an endonuclease that is activated by active caspase 3 during apoptosis and is responsible for degradation of chromatin into nucleosomal units. These nucleosomal units are then included in apoptotic bodies. The presence of apoptotic bodies is considered important for the generation of autoantigen in autoimmune diseases, such as systemic lupus erythematosus (SLE), that are characterized by the presence of antinuclear antibodies. The present study was carried out to determine the role of CAD in SLE and to investigate the ability of lupus autoantibodies to bind to CAD-deficient or CAD-sufficient apoptotic cells.
Methods:
The Sle1, Sle123, and 3H9 mouse models of SLE, in which autoimmunity is genetically predetermined, were used. To determine the role of chromatin fragmentation in SLE, CAD deficiency was introduced in these mouse models.
Results:
Deficiency of CAD resulted in increased anti-double-stranded DNA antibody titers in lupus-prone mice. Surprisingly, the absence of CAD exacerbated only genetically predetermined autoimmune responses. To further determine whether nuclear modifications are needed in order to maintain tolerance to nuclear autoantigens, we used the 3H9 mouse, an anti-DNA heavy chain knockin; in this model, the autoreactive B cells are tolerized by anergy. In accordance with findings in the CAD-mutant Sle1 and Sle123 mice, CAD-deficient 3H9 mice spontaneously generated anti-DNA antibodies. Finally, we showed that autoantibodies with specificities toward histone-DNA complexes bind more to CAD-deficient apoptotic cells than to CAD-sufficient apoptotic cells.
Conclusion:
We propose that in mice that are genetically predisposed to lupus development, nuclear apoptotic modifications are needed to maintain tolerance. In the absence of these modifications, apoptotic chromatin is abnormally exposed, facilitating the autoimmune response.
Insights
In lupus-prone mice, a deficiency in Caspase-activated DNase (CAD) led to increased anti-DNA antibodies and autoantibody binding to apoptotic cells. This suggests nuclear apoptotic modifications are crucial for maintaining tolerance in lupus development.
Area of Science:
- Immunology
- Molecular Biology
- Autoimmunity
Background:
- Caspase-activated DNase (CAD) degrades chromatin during apoptosis, forming apoptotic bodies.
- Apoptotic bodies are implicated in autoantigen generation in autoimmune diseases like Systemic Lupus Erythematosus (SLE).
- Antinuclear antibodies are characteristic of SLE.
Purpose of the Study:
- To investigate the role of CAD in SLE pathogenesis.
- To determine if lupus autoantibodies bind differently to apoptotic cells lacking CAD.
Main Methods:
- Utilized Sle1, Sle123, and 3H9 mouse models of SLE.
- Introduced CAD deficiency into these lupus-prone mouse models.
- Assessed anti-double-stranded DNA antibody titers and autoantibody binding to apoptotic cells.
Main Results:
- CAD deficiency increased anti-double-stranded DNA antibody titers in lupus-prone mice.
- Absence of CAD exacerbated genetically predetermined autoimmune responses.
- Autoantibodies targeting histone-DNA complexes bound more readily to CAD-deficient apoptotic cells.
Conclusions:
- Nuclear apoptotic modifications are essential for maintaining tolerance in genetically predisposed lupus development.
- Abnormal exposure of apoptotic chromatin, due to lack of CAD-mediated modification, facilitates autoimmune responses in SLE.
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