Membrane cofactor protein (MCP, CD46) is a complement regulatory protein that binds C3b and C4b and serves as a cofactor for their limited proteolytic degradation. A major development during the past grant cycle was the discovery that mutations in CD46 predispose to atypical hemolytlc uremic syndrome (aHUS). This finding has an immediate impact on treatment options since renal transplantation would be curative in CD46 deficiency. This is especially significant since aHUS can be a life-threatening condition that recurs in patients (usually young children) with about 50% developing renal failure. Atypical HUS is now recognized as a disease of complement deregulation due to mutations in complement regulatory proteins. We will address how CD46 deficiency predisposes to aHUS. A major goal of this grant is to characterize CD46's regulatory activity in situ. In patients with aHUS and their families, we will 1) establish a facility to identify mutations and determine the functional repertoire of the mutant proteins; 2) use model systems (CHO cells expressing the mutant proteins, EB virus transformed human B lymphocytes from aHUS families, and human endothelial cells), assess Inhibitory activity in situ; RNAi will be employed to create cells with a specific inhibitor deficiency state; 3) employ scFv-complement regulator(s) chimeras to target inhibitors to RBCs and endothelial cells in order to correct the deficiency and to define the most potent inhibitory mix of regulators to block complement activation; 4) monitor membrane movements of regulators as they are cross-linked with Abs and pathogens and in response to complement activation. A theme underlying these specific alms is to explore the process whereby the host limits complement activation on altered and injured self cells. This phenomenon we have termed TRACS, for targeted and restricted activation of the complement system, is little studied. We propose that the profile of complement activation on self-tissue has unique purposes and distinct features compared to its activation on microbes. Our long term goal is to understand how this is accomplished using CD46 deficiency In aHUS as the Illustrative example. Our proposal will help define how deficiency of the complement regulator CD46 predisposes to human disease hemolytic uremic syndrome as well as develop ways to deliver regulators to treat such conditions ? ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Project (R01)
Project #
5R01AI037618-12
Application #
7185091
Study Section
Special Emphasis Panel (ZRG1-III (01))
Program Officer
Sawyer, Richard T
Project Start
1995-04-01
Project End
2011-02-28
Budget Start
2007-03-01
Budget End
2008-02-29
Support Year
12
Fiscal Year
2007
Total Cost
$332,446
Indirect Cost
Name
Washington University
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
068552207
City
Saint Louis
State
MO
Country
United States
Zip Code
63130
Zaitsev, Sergei; Kowalska, M Anna; Neyman, Michael et al. (2012) Targeting recombinant thrombomodulin fusion protein to red blood cells provides multifaceted thromboprophylaxis. Blood 119:4779-85
Salmon, Jane E; Heuser, Cara; Triebwasser, Michael et al. (2011) Mutations in complement regulatory proteins predispose to preeclampsia: a genetic analysis of the PROMISSE cohort. PLoS Med 8:e1001013
Wu, Xiaobo; Xu, Thomas Q; Atkinson, John P (2010) Properdin homeostasis requires turnover of the alternative complement pathway. Proc Natl Acad Sci U S A 107:19444-8
Mateen, F J; Krecke, K; Younge, B R et al. (2010) Evolution of a tumor-like lesion in cerebroretinal vasculopathy and TREX1 mutation. Neurology 75:1211-3
Truscott, Steven M; Abate, Getahun; Price, Jeffrey D et al. (2010) CD46 engagement on human CD4+ T cells produces T regulatory type 1-like regulation of antimycobacterial T cell responses. Infect Immun 78:5295-306
Cardone, John; Le Friec, Gaelle; Vantourout, Pierre et al. (2010) Complement regulator CD46 temporally regulates cytokine production by conventional and unconventional T cells. Nat Immunol 11:862-71
Zaitsev, Sergei; Spitzer, Dirk; Murciano, Juan-Carlos et al. (2010) Sustained thromboprophylaxis mediated by an RBC-targeted pro-urokinase zymogen activated at the site of clot formation. Blood 115:5241-8
Zaitsev, Sergei; Zaitzev, Sergei; Spitzer, Dirk et al. (2010) Targeting of a mutant plasminogen activator to circulating red blood cells for prophylactic fibrinolysis. J Pharmacol Exp Ther 332:1022-31
Reynolds, Robyn; Hartnett, M Elizabeth; Atkinson, John P et al. (2009) Plasma complement components and activation fragments: associations with age-related macular degeneration genotypes and phenotypes. Invest Ophthalmol Vis Sci 50:5818-27
Fuchs, Anja; Atkinson, John P; Fremeaux-Bacchi, Veronique et al. (2009) CD46-induced human Treg enhance B-cell responses. Eur J Immunol 39:3097-109

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