Identification of membrane-bound CR1 (CD35) in human urine: evidence for its release by glomerular podocytes

M Pascual1, G Steiger, S Sadallah

  • 1Immunonephrology Laboratory, Centre Médical Universitaire, Geneva, Switzerland.

Insights

Urine contains complement receptor 1 (CR1) in vesicles, likely released from kidney podocytes. This urinary CR1 may serve as a biomarker for podocyte injury in kidney diseases.

Area of Science:

  • Immunology
  • Nephrology
  • Biochemistry

Background:

  • Complement receptor 1 (CR1) is found on erythrocytes, leukocytes, and podocytes, with a soluble form (sCR1) in plasma.
  • CR1's presence and form in urine (uCR1) were previously uncharacterized.

Purpose of the Study:

  • To characterize urinary CR1 (uCR1) and investigate its origin and potential role in kidney disease.

Main Methods:

  • ELISA for CR1 detection in urine.
  • Ultracentrifugation and gel filtration to analyze uCR1 size and properties.
  • Electron microscopy for structural analysis.
  • SDS-PAGE and immunoblotting for molecular mass determination.
  • Analysis of CR1 alleles in renal transplant patients.

Main Results:

  • CR1 detected in normal urine (uCR1) as larger, pelleted particles, distinct from sCR1.
  • uCR1 showed membrane-association via vesicles and was enriched in lipids.
  • uCR1 exhibited a larger molecular mass than erythrocyte CR1 (E-CR1) and sCR1, independent of glycosylation.
  • CR1 alleles in urine sometimes differed from those on erythrocytes, suggesting renal origin.
  • uCR1 retained the ability to bind C3b-coated immune complexes.
  • Decreased uCR1 excretion was observed in patients with lupus nephritis and focal sclerosis.

Conclusions:

  • Urinary CR1 (uCR1) is released from kidney podocytes, likely as CR1-coated vesicles.
  • uCR1 may serve as a novel biomarker for podocyte injury and kidney disease.

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