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Inhibition of complement regulation is key to the pathogenesis of active Heymann nephritis

B Schiller1, C He, D J Salant

  • 1Department of Medicine, Section of Nephrology, The University of Chicago, Chicago, Illinois 60637, USA.

Insights

Complement receptor 1-related protein y (Crry) is a key immunogen in Heymann nephritis. Neutralizing autoantibodies to Crry impair its function, leading to kidney injury.

Area of Science:

  • Nephrology
  • Immunology
  • Complement System Biology

Background:

  • Active Heymann nephritis (HN) is a rat model of membranous nephropathy.
  • Crry (complement receptor 1-related protein y) is a crucial complement regulator in rodents.
  • Crry is present in Fx1A, a renal tubular preparation used to induce HN.

Purpose of the Study:

  • To investigate if rats immunized with Fx1A develop autoantibodies to Crry.
  • To determine if anti-Crry autoantibodies contribute to kidney injury in HN.
  • To elucidate the role of Crry as a nephritogenic immunogen in HN.

Main Methods:

  • Immunization of rats with Fx1A preparations, with or without Crry.
  • Induction of HN in rats and assessment of proteinuria and glomerular C3 deposition.
  • Passive transfer of anti-Crry antibodies to evaluate their pathogenic role.
  • Analysis of autoantibody levels and glomerular eluates for anti-Crry antibodies.

Main Results:

  • Rats immunized with Crry-deficient Fx1A did not develop proteinuria or significant C3 deposition.
  • Passive administration of anti-Crry antibodies induced proteinuria and C3 deposition in rats immunized with Crry-deficient Fx1A.
  • Immunization with Crry-reconstituted Fx1A led to typical HN, with proteinuria correlating with glomerular C3 deposition.
  • Anti-Crry antibodies were detected in glomerular eluates of rats with HN.

Conclusions:

  • Crry is a critical nephritogenic immunogen in the Fx1A preparation.
  • Formation of neutralizing autoantibodies against Crry impairs its complement regulatory function.
  • This impairment leads to uncontrolled complement activation and subsequent kidney injury in HN.

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