1.Activation of Intrarenal Complement System in Mouse Model for Chronic Cyclosporine Nephrotoxicity.
Young Ok KIM ; Sun Woo LIM ; Can LI ; Hee Jung KANG ; Kyung Ohk AHN ; Hyun Joo YANG ; Jung Yeon GHEE ; Su hyun KIM ; Jin Young KIM ; Bum Soon CHOI ; Jin KIM ; Chul Woo YANG
Yonsei Medical Journal 2007;48(3):517-525
PURPOSE: Local activation of the complement system plays a role in target organ damage. The aim of our study was to investigate the influence of cyclosporine (CsA)- induced renal injury on the complement system in the kidney. MATERIALS AND METHODS: Mice fed a low salt (0.01%) diet were treated with vehicle (VH, olive oil, 1mL/kg/day) or CsA (30mg/kg/day) for one or four weeks. Induction of chronic CsA nephrotoxicity was evaluated with renal function and histomorphology. Activation of the complement system was assessed through analysis of the expression of C3, C4d, and membrane attack complex (MAC), and the regulatory proteins, CD46 and CD55. CsA treatment induced renal dysfunction and typical morphology (tubulointerstitial inflammation and fibrosis) at four weeks. RESULTS: CsA-induced renal injury was associated with increased the expression of C3, C4d, and MAC (C9 and upregulation of complement regulatory proteins (CD 46 and CD55). Immunohistochemistry revealed that the activated complement components were mainly confined to the injured tubulointerstitium. CONCLUSION: CsA-induced renal injury is associated with activation of the intrarenal complement system.
Animals
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Antigens, CD45/analysis
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Antigens, CD46/analysis
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Antigens, CD55/analysis
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Complement C3/analysis
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Complement C4b/analysis
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Complement Membrane Attack Complex/analysis
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Complement System Proteins/*analysis
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Cyclosporine/*toxicity
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Disease Models, Animal
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Immunity, Innate/drug effects
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Immunoblotting
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Immunohistochemistry
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Immunosuppressive Agents/toxicity
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Kidney/*drug effects/immunology/pathology
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Kidney Diseases/*chemically induced/immunology
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Mice
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Microscopy, Confocal
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Peptide Fragments/analysis
2.Interactions of complement proteins C1q and factor H with lipid A and Escherichia coli: further evidence that factor H regulates the classical complement pathway.
Lee Aun TAN ; Andrew C YANG ; Uday KISHORE ; Robert B SIM
Protein & Cell 2011;2(4):320-332
Proteins of the complement system are known to interact with many charged substances. We recently characterized binding of C1q and factor H to immobilized and liposomal anionic phospholipids. Factor H inhibited C1q binding to anionic phospholipids, suggesting a role for factor H in regulating activation of the complement classical pathway by anionic phospholipids. To extend this finding, we examined interactions of C1q and factor H with lipid A, a well-characterized activator of the classical pathway. We report that C1q and factor H both bind to immobilized lipid A, lipid A liposomes and intact Escherichia coli TG1. Factor H competes with C1q for binding to these targets. Furthermore, increasing the factor H: C1q molar ratio in serum diminished C4b fixation, indicating that factor H diminishes classical pathway activation. The recombinant forms of the Cterminal, globular heads of C1q A, B and C chains bound to lipid A and E. coli in a manner qualitatively similar to native C1q, confirming that C1q interacts with these targets via its globular head region. These observations reinforce our proposal that factor H has an additional complement regulatory role of down-regulating classical pathway activation in response to certain targets. This is distinct from its role as an alternative pathway down-regulator. We suggest that under physiological conditions, factor H may serve as a downregulator of bacterially-driven inflammatory responses, thereby fine-tuning and balancing the inflammatory response in infections with Gram-negative bacteria.
Binding, Competitive
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immunology
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Complement Activation
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immunology
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Complement C1q
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chemistry
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immunology
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metabolism
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Complement C4b
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analysis
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Complement Factor H
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chemistry
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immunology
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metabolism
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Complement Pathway, Classical
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immunology
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Escherichia coli
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immunology
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metabolism
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Humans
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Iodine Radioisotopes
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Isotope Labeling
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Lipid A
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immunology
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metabolism
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Liposomes
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immunology
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metabolism
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Protein Binding
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immunology
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Recombinant Proteins
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chemistry
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immunology
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metabolism
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Substrate Specificity