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.

Arthritis and Rheumatism
|December 1, 2011
PubMed
Abstract

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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