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Published on: June 23, 2015
Unrestricted C3 activation occurs in Crry-deficient kidneys and rapidly leads to chronic renal failure
Lihua Bao1, Ying Wang, Anthony Chang
1Section of Nephrology, Department of Medicine, The University of Chicago, 5841 S. Maryland Avenue, MC5100, Chicago, IL 60637, USA.
Abstract:
Deficiency of the C3 convertase regulator Crry is embryonic lethal in mice unless C3 also is absent. For evaluation of the effect of local kidney Crry deficiency in the setting of an intact complement system, Crry(-/-)C3(-/-) mouse kidneys were transplanted into syngeneic C57BL/6 wild-type mice. These Crry-deficient kidneys developed marked inflammatory cell infiltration, tubular damage, and interstitial fibrosis, whereas similar changes were absent in control transplanted kidneys. Strong C3 deposition in the vessels and tubules that correlated significantly with measures of disease supported that complement activation was pathogenic in this model. Microarray studies showed upregulation of a number of chemokine and extracellular matrix genes, which were validated for CCL2 and CXCL10 mRNA and collagen III protein. The functional significance of these pathophysiologic findings was evaluated by removing both native kidneys, so the transplanted kidney alone provided renal function. Within 21 d of transplantation, seven of eight Crry-deficient kidneys in complement-sufficient wild-type hosts failed, compared with two of 13 controls (P = 0.001), with final blood urea nitrogen levels of 133.9 +/- 33.0 and 55.6 +/- 8.3 mg/dl, respectively (P = 0.015). These data show that mouse Crry is a critical complement regulator in the kidney. When absent, unrestricted complement activation occurs and quickly leads to marked inflammation and progressive renal failure, with features relevant to human diseases with underlying defects in complement regulation, such as hemolytic uremic syndrome.
Insights
Complement regulator Crry deficiency in kidneys causes severe inflammation and rapid renal failure in mice. This highlights Crry
Area of Science:
- Immunology
- Nephrology
- Complement System Biology
Background:
- Crry (C3 convertase regulator) deficiency is typically embryonic lethal in mice.
- Evaluating local kidney Crry deficiency requires a model with an intact complement system.
Purpose of the Study:
- To assess the impact of local kidney Crry deficiency on complement-mediated kidney injury.
- To investigate the role of Crry in regulating complement activation within the kidney.
Main Methods:
- Transplantation of Crry-deficient mouse kidneys into wild-type hosts.
- Analysis of kidney histology, C3 deposition, gene expression (microarray), and renal function (blood urea nitrogen).
Main Results:
- Crry-deficient kidneys showed significant inflammation, tubular damage, interstitial fibrosis, and C3 deposition.
- Upregulation of chemokine (CCL2, CXCL10) and extracellular matrix (collagen III) genes was observed.
- Transplanted Crry-deficient kidneys failed rapidly (7/8) compared to controls (2/13) in complement-sufficient hosts.
Conclusions:
- Mouse Crry is essential for preventing uncontrolled complement activation in the kidney.
- Crry absence leads to rapid, progressive renal failure and inflammation.
- This model offers insights into human diseases with complement dysregulation, like hemolytic uremic syndrome.
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